研究者業績

JM Dijkstra

Dijkstra JM

基本情報

所属
藤田医科大学 研究推進本部URA室 准教授
学位
Ph.D.(Utrecht University, Holland)

J-GLOBAL ID
201101031790169840
researchmap会員ID
B000004111

外部リンク

My Research Interests:
The immune system is characterized by a myriad of interacting cells and molecules, and it is probably outside our intellectual grasp to ever fully understand it. However, we can aspire to understand the central regulating mechanisms of the immune system in sufficient detail for being helpful with the establishment of therapies against disease. In order to find “central” regulating mechanisms, I try to compare the immune systems of various jawed vertebrate species, in the assumption that shared features are the most important features. My research has concentrated on the major histocompatibility complex (MHC), TCR co-receptors, and cytokines. The species that I worked with were mostly fish, but currently I am also investigating mammals.

受賞

 4

論文

 92
  • Peter Riederer, Sabrina Strobel, Toshiharu Nagatsu, Hirohisa Watanabe, Xiqun Chen, Peter-Andreas Löschmann, Jeswinder Sian-Hulsmann, Wolfgang H Jost, Thomas Müller, Johannes M Dijkstra, Camelia-Maria Monoranu
    Journal of neural transmission (Vienna, Austria : 1996) 2025年4月11日  
    Treatment with levodopa, a precursor of dopamine (DA), to compensate for the loss of endogenous DA in Parkinson's disease (PD), has been a success story for over 50 years. However, in late stages of PD, the progressive degeneration of dopaminergic neurons and the ongoing reduction in endogenous DA concentrations make it increasingly difficult to maintain normal-like DA function. Typically, in late PD, higher doses of levodopa are required, and the fluctuations in striatal DA concentrations-reflecting the timing pattern of levodopa administrations-become more pronounced. These DA fluctuations can include highs that induce involuntary movements (levodopa-induced dyskinesia, LID) or lows that result in insufficient suppression of PD symptoms ("OFF" phases). The enhanced fluctuations primarily arise from the loss of DA buffering capacity, resulting from the degeneration of DA neurons, and an increased reliance on levodopa-derived DA release as a "false neurotransmitter" by serotonergic neurons. In many patients, the LID and OFF-phases can be alleviated by modifying the levodopa therapy to provide a more continuous delivery or by using additional medications, such as monoamine oxidase-B (MAO-B) inhibitors, amantadine, or dopaminergic receptor agonists. Understanding the challenges faced by levodopa therapy also requires considering that the PD striatum is characterized not only by the loss of DA neurons but also by neuroplastic adaptations and PD-induced degenerations of other neural populations. This review provides a broad overview on the use of levodopa in treating PD, with a focus on the underlying science of the challenges encountered in late stages of the disease.
  • Jackson G Schumacher, Xinyuan Zhang, Eric A Macklin, Jian Wang, Armin Bayati, Johannes M Dijkstra, Hirohisa Watanabe, Michael A Schwarzschild, Marianna Cortese, Xuehong Zhang, Xiqun Chen
    medRxiv : the preprint server for health sciences 2025年4月2日  
    BACKGROUND: α-Synuclein (α-syn) seed amplification assays (SAAs) have shown remarkable potential in diagnosing Parkinson's disease (PD). Using data from the Parkinson's Progression Markers Initiative (PPMI) cohort, we aimed to test whether baseline α-syn seeding activity was associated with disease progression in sporadic PD, LRRK2-associated PD (LRRK2 PD), and GBA-associated PD (GBA PD). METHODS: We analyzed 7 years of motor, non-motor, and cognitive assessments and 5 years of dopamine transporter imaging along with baseline α-syn SAA results from 564 PPMI participants (n=332 sporadic PD, 162 LRRK2 PD, and 70 GBA PD) using linear mixed-effects models, adjusted for potential confounders, to test whether baseline α-syn SAA positivity (n=315 sporadic PD, 111 LRRK2 PD, and 66 GBA PD) was associated with PD progression. RESULTS: While non-statistically significant, there was a trend towards faster motor decline in participants with α-syn SAA positive LRRK2 PD compared to those with α-syn SAA negative LRRK2 PD (MDS-UPDRS III points per year: 2.39 (95% confidence interval: 1.86 - 2.92) vs. 1.76 (0.93 - 2.60); difference=0.63 (-0.29 - 1.55, p=0.18). There was no difference in motor decline between α-syn SAA positive and α-syn SAA negative participants with sporadic PD (2.46 (2.20 - 2.72) vs. 2.39 (1.36 - 3.42); difference=0.07 (-0.99 - 1.12), p=0.90) or GBA PD (2.67 (1.91 - 3.44) vs. 2.40 (-0.18 - 4.99); difference=0.27 (-2.42 - 2.96), p=0.84). No statistically significant differences were seen in the progression of non-motor symptoms, cognition, or DAT imaging. CONCLUSIONS: We found no statistically significant associations between baseline α-syn seeding activity and PD progression among manifest patients in the PPMI cohort. Future studies are needed to further investigate relationships among baseline α-syn seeding activity, disease heterogeneity, disease stage, and PD progression.
  • Johannes M. Dijkstra, Annette Kuehn, Eiji Sugihara, Yasuto Kondo
    Genes 15(10) 2024年10月18日  
    Parvalbumins are the main source of food allergies in fish meat, with each fish possessing multiple different parvalbumins. The naming convention of these allergens in terms of allergen codes (numbers) is species-specific. Allergen codes for parvalbumin isoallergens and allergen variants are based on sequence identities relative to the first parvalbumin allergen discovered in that particular species. This means that parvalbumins with similar allergen codes, such as catfish Pan h 1.0201 and redfish Seb m 1.0201, are not necessarily the most similar proteins, or encoded by the same gene. Here, we aim to elucidate the molecular basis of parvalbumins. We explain the complicated genetics of fish parvalbumins in an accessible manner for fish allergen researchers. Teleost or modern bony fish, which include most commercial fish species, have varying numbers of up to 22 parvalbumin genes. All have derived from ten parvalbumin genes in their common ancestor. We have named these ten genes "parvalbumin 1-to-10" (PVALB1-to-PVALB10), building on earlier nomenclature established for zebrafish. For duplicated genes, we use variant names such as, for example, "PVALB2A and PVALB2B". As illustrative examples of our gene identification system, we systematically analyze all parvalbumin genes in two common allergy-inducing species in Japan: red seabream (Pagrus major) and chum salmon (Oncorhynchus keta). We also provide gene identifications for known parvalbumin allergens in various fish species.
  • Hirohisa Watanabe, Johannes M Dijkstra, Toshiharu Nagatsu
    International journal of molecular sciences 25(4) 2024年2月7日  
    The core pathological event in Parkinson's disease (PD) is the specific dying of dopamine (DA) neurons of the substantia nigra pars compacta (SNc). The reasons why SNc DA neurons are especially vulnerable and why idiopathic PD has only been found in humans are still puzzling. The two main underlying factors of SNc DA neuron vulnerability appear related to high DA production, namely (i) the toxic effects of cytoplasmic DA metabolism and (ii) continuous cytosolic Ca2+ oscillations in the absence of the Ca2+-buffer protein calbindin. Both factors cause oxidative stress by producing highly reactive quinones and increasing intra-mitochondrial Ca2+ concentrations, respectively. High DA expression in human SNc DA neuron cell bodies is suggested by the abundant presence of the DA-derived pigment neuromelanin, which is not found in such abundance in other species and has been associated with toxicity at higher levels. The oxidative stress created by their DA production system, despite the fact that the SN does not use unusually high amounts of energy, explains why SNc DA neurons are sensitive to various genetic and environmental factors that create mitochondrial damage and thereby promote PD. Aging increases multiple risk factors for PD, and, to a large extent, PD is accelerated aging. To prevent PD neurodegeneration, possible approaches that are discussed here are (1) reducing cytoplasmic DA accumulation, (2) blocking cytoplasmic Ca2+ oscillations, and (3) providing bioenergetic support.
  • Johannes M Dijkstra, Toshiharu Nagatsu
    Fujita medical journal 10(1) 1-7 2024年2月  
    Distinguished Professor Emeritus Tsuneko Okazaki is a hero of science. Together with her late husband, Professor Reiji Okazaki, she discovered that DNA replication involves the discontinuous synthesis of the DNA lagging strand by intermediates of, what is now called, "Okazaki fragments." She has been a pioneer for women in science and, in 1983, became the first female full Professor at Nagoya University. From 1997 to 2012, she was a full Professor and later a Visiting Professor at Fujita Health University, and this review zooms in on that period. Besides a summary of her career, this article also includes personal memories of researchers who worked with Professor Okazaki.
  • Fumio Takizawa, Keiichiro Hashimoto, Ryuichiro Miyazawa, Yuko Ohta, Ana Veríssimo, Martin F. Flajnik, David Parra, Kotaro Tokunaga, Hiroaki Suetake, J. Oriol Sunyer, Johannes M. Dijkstra
    Frontiers in Immunology 14 2023年12月21日  
    CD4 and LAG-3 are related molecules that are receptors for MHC class II molecules. Their major functional differences are situated in their cytoplasmic tails, in which CD4 has an activation motif and LAG-3 an inhibitory motif. Here, we identify shark LAG-3 and show that a previously identified shark CD4-like gene has a genomic location, expression pattern, and motifs similar to CD4 in other vertebrates. In nurse shark (Ginglymostoma cirratum) and cloudy catshark (Scyliorhinus torazame), the highest CD4 expression was consistently found in the thymus whereas such was not the case for LAG-3. Throughout jawed vertebrates, the CD4 cytoplasmic tail possesses a Cx(C/H) motif for binding kinase LCK, and the LAG-3 cytoplasmic tail possesses (F/Y)xxL(D/E) including the previously determined FxxL inhibitory motif resembling an immunoreceptor tyrosine-based inhibition motif (ITIM). On the other hand, the acidic end of the mammalian LAG-3 cytoplasmic tail, which is believed to have an inhibitory function as well, was acquired later in evolution. The present study also identified CD4-1, CD4-2, and LAG-3 in the primitive ray-finned fishes bichirs, sturgeons, and gars, and experimentally determined these sequences for sterlet sturgeon (Acipenser ruthenus). Therefore, with CD4-1 and CD4-2 already known in teleosts (modern ray-finned fish), these two CD4 lineages have now been found within all major clades of ray-finned fish. Although different from each other, the cytoplasmic tails of ray-finned fish CD4-1 and chondrichthyan CD4 not only contain the Cx(C/H) motif but also an additional highly conserved motif which we expect to confer a function. Thus, although restricted to some species and gene copies, in evolution both CD4 and LAG-3 molecules appear to have acquired functional motifs besides their canonical Cx(C/H) and ITIM-like motifs, respectively. The presence of CD4 and LAG-3 molecules with seemingly opposing functions from the level of sharks, the oldest living vertebrates with a human-like adaptive immune system, underlines their importance for the jawed vertebrate immune system. It also emphasizes the general need of the immune system to always find a balance, leading to trade-offs, between activating and inhibiting processes.
  • Kazumasa Wakamatsu, Johannes M Dijkstra, Turid Mørkøre, Shosuke Ito
    International journal of molecular sciences 24(23) 2023年11月27日  
    Superficial discolored spots on Atlantic salmon (Salmo salar) fillets are a serious quality problem for commercial seafood farming. Previous reports have proposed that the black spots (called melanized focal changes (MFCs)) may be melanin, but no convincing evidence has been reported. In this study, we performed chemical characterization of MFCs and of red pigment (called red focal changes (RFCs)) from salmon fillets using alkaline hydrogen peroxide oxidation and hydroiodic acid hydrolysis. This revealed that the MFCs contain 3,4-dihydroxyphenylalanine (DOPA)-derived eumelanin, whereas the RFCs contain only trace amounts of eumelanin. Therefore, it is probable that the black color of the MFCs can be explained by the presence of eumelanin from accumulated melanomacrophages. For the red pigment, we could not find a significant signature of either eumelanin or pheomelanin; the red color is probably predominantly hemorrhagic in nature. However, we found that the level of pigmentation in RFCs increased together with some melanogenic metabolites. Comparison with a "mimicking experiment", in which a mixture of a salmon homogenate + DOPA was oxidized with tyrosinase, suggested that the RFCs include conjugations of DOPAquinone and/or DOPAchrome with salmon muscle tissue proteins. In short, the results suggest that melanogenic metabolites in MFCs and RFCs derive from different chemical pathways, which would agree with the two different colorations deriving from distinct cellular origins, namely melanomacrophages and red blood cells, respectively.
  • Takuma Asahi, Shinya Abe, Guangwei Cui, Akihiro Shimba, Tsukasa Nabekura, Hitoshi Miyachi, Satsuki Kitano, Keizo Ohira, Johannes M Dijkstra, Masaki Miyazaki, Akira Shibuya, Hiroshi Ohno, Koichi Ikuta
    eLife 12 2023年6月22日  
    Group 1 innate lymphoid cells (G1-ILCs), including circulating natural killer (NK) cells and tissue-resident type 1 ILCs (ILC1s), are innate immune sentinels critical for responses against infection and cancer. In contrast to relatively uniform NK cells through the body, diverse ILC1 subsets have been characterized across and within tissues in mice, but their developmental and functional heterogeneity remain unsolved. Here, using multimodal in vivo approaches including fate-mapping and targeting of the interleukin 15 (IL-15)-producing microenvironment, we demonstrate that liver parenchymal niches support the development of a cytotoxic ILC1 subset lacking IL-7 receptor (7 R- ILC1s). During ontogeny, fetal liver (FL) G1-ILCs arise perivascularly and then differentiate into 7 R- ILC1s within sinusoids. Hepatocyte-derived IL-15 supports parenchymal development of FL G1-ILCs to maintain adult pool of 7 R- ILC1s. IL-7R+ (7R+) ILC1s in the liver, candidate precursors for 7 R- ILC1s, are not essential for 7 R- ILC1 development in physiological conditions. Functionally, 7 R- ILC1s exhibit killing activity at steady state through granzyme B expression, which is underpinned by constitutive mTOR activity, unlike NK cells with exogenous stimulation-dependent cytotoxicity. Our study reveals the unique ontogeny and functions of liver-specific ILC1s, providing a detailed interpretation of ILC1 heterogeneity.
  • Peter Riederer, Toshiharu Nagatsu, Moussa B H Youdim, Max Wulf, Johannes M Dijkstra, Jeswinder Sian-Huelsmann
    Journal of neural transmission (Vienna, Austria : 1996) 130(5) 627-646 2023年5月  
    Since the description of some peculiar symptoms by James Parkinson in 1817, attempts have been made to define its cause or at least to enlighten the pathology of "Parkinson's disease (PD)." The vast majority of PD subtypes and most cases of sporadic PD share Lewy bodies (LBs) as a characteristic pathological hallmark. However, the processes underlying LBs generation and its causal triggers are still unknown. ɑ-Synuclein (ɑ-syn, encoded by the SNCA gene) is a major component of LBs, and SNCA missense mutations or duplications/triplications are causal for rare hereditary forms of PD. Thus, it is imperative to study ɑ-syn protein and its pathology, including oligomerization, fibril formation, aggregation, and spreading mechanisms. Furthermore, there are synergistic effects in the underlying pathogenic mechanisms of PD, and multiple factors-contributing with different ratios-appear to be causal pathological triggers and progression factors. For example, oxidative stress, reduced antioxidative capacity, mitochondrial dysfunction, and proteasomal disturbances have each been suggested to be causal for ɑ-syn fibril formation and aggregation and to contribute to neuroinflammation and neural cell death. Aging is also a major risk factor for PD. Iron, as well as neuromelanin (NM), show age-dependent increases, and iron is significantly increased in the Parkinsonian substantia nigra (SN). Iron-induced pathological mechanisms include changes of the molecular structure of ɑ-syn. However, more recent PD research demonstrates that (i) LBs are detected not only in dopaminergic neurons and glia but in various neurotransmitter systems, (ii) sympathetic nerve fibres degenerate first, and (iii) at least in "brain-first" cases dopaminergic deficiency is evident before pathology induced by iron and NM. These recent findings support that the ɑ-syn/LBs pathology as well as iron- and NM-induced pathology in "brain-first" cases are important facts of PD pathology and via their interaction potentiate the disease process in the SN. As such, multifactorial toxic processes posted on a personal genetic risk are assumed to be causal for the neurodegenerative processes underlying PD. Differences in ratios of multiple factors and their spatiotemporal development, and the fact that common triggers of PD are hard to identify, imply the existence of several phenotypical subtypes, which is supported by arguments from both the "bottom-up/dual-hit" and "brain-first" models. Therapeutic strategies are necessary to avoid single initiation triggers leading to PD.
  • Yujiao Sun, Lizhen Ma, Shen Li, Yawen Wang, Ruiqi Xiao, Junqi Yang, Johannes M Dijkstra, Chun Xia
    Cells 12(7) 2023年4月6日  
    DLA-88 is a classical major histocompatibility complex (MHC) class I gene in dogs, and allelic DLA-88 molecules have been divided into two categories named "DLA-88*0" and "DLA-88*5." The defining difference between the two categories concerns an LQW motif in the α2 domain helical region of the DLA-88*5 molecules that includes the insertion of an extra amino acid compared to MHC class I consensus length. We here show that this motif has been exchanged by recombination between different DLA-88 evolutionary lineages. Previously, with pDLA-88*508:01, the structure of a molecule of the DLA-88*5 category was elucidated. The present study is the first to elucidate a structure, using X-ray crystallography, of the DLA-88*0 category, namely DLA-88*001:04 complexed with β2m and a nonamer peptide derived from canine distemper virus (CDV). The LQW motif that distinguishes DLA-88*5 from DLA-88*0 causes a shallower peptide binding groove (PBG) and a leucine exposed at the top of the α2 domain helix expected to affect T cell selection. Peptide ligand amino acid substitution and pMHC-I complex formation and stability analyses revealed that P2 and P3 are the major anchor residue positions for binding to DLA-88*001:04. We speculate that the distribution pattern of the LQW motif among canine classical MHC class I alleles represents a strategy to enhance allogeneic rejection by T cells of transmissible cancers such as canine transmissible venereal tumor (CTVT).
  • Toshiharu Nagatsu, Akira Nakashima, Hirohisa Watanabe, Shosuke Ito, Kazumasa Wakamatsu, Fabio A. Zucca, Luigi Zecca, Moussa Youdim, Maximilian Wulf, Peter Riederer, Johannes M. Dijkstra
    Journal of Neural Transmission 2023年3月20日  
    Abstract The dark pigment neuromelanin (NM) is abundant in cell bodies of dopamine (DA) neurons in the substantia nigra (SN) and norepinephrine (NE) neurons in the locus coeruleus (LC) in the human brain. During the progression of Parkinson’s disease (PD), together with the degeneration of the respective catecholamine (CA) neurons, the NM levels in the SN and LC markedly decrease. However, questions remain among others on how NM is associated with PD and how it is synthesized. The biosynthesis pathway of NM in the human brain has been controversial because the presence of tyrosinase in CA neurons in the SN and LC has been elusive. We propose the following NM synthesis pathway in these CA neurons: (1) Tyrosine is converted by tyrosine hydroxylase (TH) to L-3,4-dihydroxyphenylalanine (L-DOPA), which is converted by aromatic L-amino acid decarboxylase to DA, which in LC neurons is converted by dopamine β-hydroxylase to NE; (2) DA or NE is autoxidized to dopamine quinone (DAQ) or norepinephrine quinone (NEQ); and (3) DAQ or NEQ is converted to eumelanic NM (euNM) and pheomelanic NM (pheoNM) in the absence and presence of cysteine, respectively. This process involves proteins as cysteine source and iron. We also discuss whether the NM amounts per neuromelanin-positive (NM+) CA neuron are higher in PD brain, whether NM quantitatively correlates with neurodegeneration, and whether an active lifestyle may reduce NM formation.
  • Johannes M Dijkstra, Yasuto Kondo
    Biology 11(12) 2022年11月25日  
    Parvalbumins are small molecules with important functions in Ca2+ signaling, but their sequence comparisons to date, especially in fish, have been relatively poor. We here, characterize sequence motifs that distinguish parvalbumin subfamilies across vertebrate species, as well as those that distinguish individual parvalbumins (orthologues) in fish, and map them to known parvalbumin structures. As already observed by others, all classes of jawed vertebrates possess parvalbumins of both the α-parvalbumin and oncomodulin subfamilies. However, we could not find convincing phylogenetic support for the common habit of classifying all non-α-parvalbumins together as "β-parvalbumins." In teleost (modern bony) fish, we here distinguish parvalbumins 1-to-10, of which the gene copy number can differ between species. The genes for α-parvalbumins (pvalb6 and pvalb7) and oncomodulins (pvalb8 and pvalb9) are well conserved between teleost species, but considerable variation is observed in their copy numbers of the non-α/non-oncomodulin genes pvalb1-to-5 and pvalb10. Teleost parvalbumins 1-to-4 are hardly distinguishable from each other and are highly expressed in muscle, and described allergens belong to this subfamily. However, in some fish species α-parvalbumin expression is also high in muscle. Pvalb5 and pvalb10 molecules form distinct lineages, the latter even predating the origin of teleosts, but have been lost in some teleost species. The present study aspires to be a frame of reference for future studies trying to compare different parvalbumins.
  • Guangwei Cui, Akihiro Shimba, Jianshi Jin, Taisaku Ogawa, Yukiko Muramoto, Hitoshi Miyachi, Shinya Abe, Takuma Asahi, Shizue Tani-Ichi, Johannes M Dijkstra, Yayoi Iwamoto, Kirill Kryukov, Yuanbo Zhu, Daichi Takami, Takahiro Hara, Satsuki Kitano, Yan Xu, Hajime Morita, Moyu Zhang, Lynn Zreka, Keishi Miyata, Takashi Kanaya, Shinya Okumura, Takashi Ito, Etsuro Hatano, Yoshimasa Takahashi, Hiroshi Watarai, Yuichi Oike, Tadashi Imanishi, Hiroshi Ohno, Toshiaki Ohteki, Nagahiro Minato, Masato Kubo, Georg A Holländer, Hideki Ueno, Takeshi Noda, Katsuyuki Shiroguchi, Koichi Ikuta
    Science immunology 7(76) eabj8760 2022年10月28日  
    Invariant natural killer T (iNKT) cells are a group of innate-like T lymphocytes that recognize lipid antigens. They are supposed to be tissue resident and important for systemic and local immune regulation. To investigate the heterogeneity of iNKT cells, we recharacterized iNKT cells in the thymus and peripheral tissues. iNKT cells in the thymus were divided into three subpopulations by the expression of the natural killer cell receptor CD244 and the chemokine receptor CXCR6 and designated as C0 (CD244-CXCR6-), C1 (CD244-CXCR6+), or C2 (CD244+CXCR6+) iNKT cells. The development and maturation of C2 iNKT cells from C0 iNKT cells strictly depended on IL-15 produced by thymic epithelial cells. C2 iNKT cells expressed high levels of IFN-γ and granzymes and exhibited more NK cell-like features, whereas C1 iNKT cells showed more T cell-like characteristics. C2 iNKT cells were influenced by the microbiome and aging and suppressed the expression of the autoimmune regulator AIRE in the thymus. In peripheral tissues, C2 iNKT cells were circulating that were distinct from conventional tissue-resident C1 iNKT cells. Functionally, C2 iNKT cells protected mice from the tumor metastasis of melanoma cells by enhancing antitumor immunity and promoted antiviral immune responses against influenza virus infection. Furthermore, we identified human CD244+CXCR6+ iNKT cells with high cytotoxic properties as a counterpart of mouse C2 iNKT cells. Thus, this study reveals a circulating subset of iNKT cells with NK cell-like properties distinct from conventional tissue-resident iNKT cells.
  • Youhei Nashimoto, Fumio Matsushita, Johannes M Dijkstra, Yuta Nakamura, Hidehiko Akiyama, Jiharu Hamako, Takashi Morita, Satohiko Araki, Taei Matsui
    Toxins 14(4) 2022年3月25日  
    Bitiscetin-1 (aka bitiscetin) and bitiscetin-2 are C-type lectin-like proteins purified from the venom of Bitis arietans (puff adder). They bind to von Willebrand factor (VWF) and-at least bitiscetin-1-induce platelet agglutination via enhancement of VWF binding to platelet glycoprotein Ib (GPIb). Bitiscetin-1 and -2 bind the VWF A1 and A3 domains, respectively. The A3 domain includes the major site of VWF for binding collagen, explaining why bitiscetin-2 blocks VWF-to-collagen binding. In the present study, sequences for a novel bitiscetin protein-bitiscetin-3-were identified in cDNA constructed from the B. arietans venom gland. The deduced amino acid sequences of bitiscetin-3 subunits α and β share 79 and 80% identity with those of bitiscetin-1, respectively. Expression vectors for bitiscetin-3α and -3β were co-transfected to 293T cells, producing the heterodimer protein recombinant bitiscetin-3 (rBit-3). Functionally, purified rBit-3 (1) induced platelet agglutination involving VWF and GPIb, (2) did not compete with bitiscetin-1 for binding to VWF, (3) blocked VWF-to-collagen binding, and (4) lost its platelet agglutination inducing ability in the presence of an anti-VWF monoclonal antibody that blocked VWF-to-collagen binding. These combined results suggest that bitiscetin-3 binds to the A3 domain, as does bitiscetin-2. Except for a small N-terminal fragment of a single subunit-which differs from that of both bitiscetin-3 subunits-the sequences of bitiscetin-2 have never been determined. Therefore, by identifying and analyzing bitiscetin-3, the present study is the first to present the full-length α- and β-subunit sequences and recombinant expression of a bitiscetin-family toxin that blocks the binding of VWF to collagen.
  • Kazuhiko Okamura, Johannes M Dijkstra, Kentaro Tsukamoto, Unni Grimholt, Geert F Wiegertjes, Akiko Kondow, Hisateru Yamaguchi, Keiichiro Hashimoto
    Proceedings of the National Academy of Sciences of the United States of America 118(51) 2021年12月21日  
    Two classes of major histocompatibility complex (MHC) molecules, MHC class I and class II, play important roles in our immune system, presenting antigens to functionally distinct T lymphocyte populations. However, the origin of this essential MHC class divergence is poorly understood. Here, we discovered a category of MHC molecules (W-category) in the most primitive jawed vertebrates, cartilaginous fish, and also in bony fish and tetrapods. W-category, surprisingly, possesses class II-type α- and β-chain organization together with class I-specific sequence motifs for interdomain binding, and the W-category α2 domain shows unprecedented, phylogenetic similarity with β2-microglobulin of class I. Based on the results, we propose a model in which the ancestral MHC class I molecule evolved from class II-type W-category. The discovery of the ancient MHC group, W-category, sheds a light on the long-standing critical question of the MHC class divergence and suggests that class II type came first.
  • Johannes M Dijkstra, Toshiharu Nagatsu
    Journal of neural transmission (Vienna, Austria : 1996) 2021年12月10日  
    Psychotherapies aim to relieve patients from mental distress by guiding them toward healthier attitudes and behaviors. Psychotherapies can differ substantially in concepts and approaches. In this review article, we compare the methods and science of three established psychotherapies: Morita Therapy (MT), which is a 100-year-old method established in Japan; Cognitive Behavioral Therapy (CBT), which-worldwide-has become the major psychotherapy; and Acceptance and Commitment Therapy (ACT), which is a relatively young psychotherapy that shares some characteristics with MT. The neuroscience of psychotherapy as a system is only beginning to be understood, but relatively solid scientific information is available about some of its important aspects such as learning, physical health, and social interactions. On average, psychotherapies work best if combined with pharmacotherapies. This synergy may rely on the drugs helping to "kickstart" the use of neural pathways (behaviors) to which a patient otherwise has poor access. Improved behavior, guided by psychotherapy, can then consolidate these pathways by their continued usage throughout a patient's life.
  • Yanan Wu, Nianzhi Zhang, Xiaohui Wei, Shuangshuang Lu, Shen Li, Keiichiro Hashimoto, Johannes M Dijkstra, Chun Xia
    Journal of immunology (Baltimore, Md. : 1950) 2021年6月18日  
    Cartilaginous fish are the most primitive extant species with MHC molecules. Using the nurse shark, the current study is, to the best of our knowledge, the first to present a peptide-loaded MHC class I (pMHC-I) structure for this class of animals. The overall structure was found to be similar between cartilaginous fish and bony animals, showing remarkable conservation of interactions between the three pMHC-I components H chain, β2-microglobulin (β2-m), and peptide ligand. In most previous studies, relatively little attention was given to the details of binding between the H chain and β2-m, and our study provides important new insights. A pronounced conserved feature involves the insertion of a large β2-m F56+W60 hydrophobic knob into a pleat of the β-sheet floor of the H chain α1α2 domain, with the knob being surrounded by conserved residues. Another conserved feature is a hydrogen bond between β2-m Y10 and a proline in the α3 domain of the H chain. By alanine substitution analysis, we found that the conserved β2-m residues Y10, D53, F56, and W60-each binding the H chain-are required for stable pMHC-I complex formation. For the β2-m residues Y10 and F56, such observations have not been reported before. The combined data indicate that for stable pMHC-I complex formation β2-m should not only bind the α1α2 domain but also the α3 domain. Knowing the conserved structural features of pMHC-I should be helpful for future elucidations of the mechanisms of pMHC-I complex formation and peptide editing.
  • Hiroki Doi, Taei Matsui, Johannes M Dijkstra, Atsushi Ogasawara, Yuki Higashimoto, Seiji Imamura, Tamae Ohye, Hiromu Takematsu, Itsuro Katsuda, Hidehiko Akiyama
    F1000Research 10 542-542 2021年  査読有り
    Background: Andrographolide (Andro) is a diterpenoid component of the plant Andrographis paniculata that is known for its anti-tumor activity against a variety of cancer cells.   Methods: We studied the effects of Andro on the viability of the human leukemia monocytic cell line THP-1 and the human multiple myeloma cell line H929. Andro was compared with cytosine arabinoside (Ara-C) and vincristine (VCR), which are well-established therapeutics against hematopoietic tumors. The importance of reactive oxygen species (ROS) production for the toxicity of each agent was investigated by using an inhibitor of ROS production, N-acetyl-L-cysteine (NAC).    Results:  Andro reduced the viability of THP-1 and H929 in a dose-dependent manner. H929 viability was highly susceptible to Andro, although only slightly susceptible to Ara-C. The agents Andro, Ara-C, and VCR each induced apoptosis, as shown by cellular shrinkage, DNA fragmentation, and increases in annexin V-binding, caspase-3/7 activity, ROS production, and mitochondrial membrane depolarization. Whereas Ara-C and VCR increased the percentages of cells in the G0/G1 and G2/M phases, respectively, Andro showed little or no detectable effect on cell cycle progression. The apoptotic activities of Andro were largely suppressed by NAC, an inhibitor of ROS production, whereas NAC hardly affected the apoptotic activities of Ara-C and VCR.  Conclusions: Andro induces ROS-dependent apoptosis in monocytic leukemia THP-1 and multiple myeloma H929 cells, underlining its potential as a therapeutic agent for treating hematopoietic tumors. The high toxicity for (thus forming: The high toxicity for H929 cells, by a mechanism that is different from that of Ara-C and VCR, is encouraging for further studies on the use of Andro against multiple myeloma.) H929 cells, by a mechanism that is different from that of Ara-C and VCR, is encouraging for further studies on the use of Andro against multiple myeloma.
  • Johannes M Dijkstra, Aaron P Frenette, Brian Dixon
    F1000Research 10 196-196 2021年  
    In the spring of 2020, we and others hypothesized that T cells in COVID-19 patients may recognize identical protein fragments shared between the coronaviruses of the common cold and COVID-19 and thereby confer cross-virus immune memory. Here, we look at this issue by screening studies that, since that time, have experimentally addressed COVID-19 associated T cell specificities. Currently, the identical T cell epitope shared between COVID-19 and common cold coronaviruses most convincingly identified as immunogenic is the CD8 + T cell epitope VYIGDPAQL if presented by the MHC class I allele HLA-A*24:02. The HLA-A*24:02 allele is found in the majority of Japanese individuals and several indigenous populations in Asia, Oceania, and the Americas. In combination with histories of common cold infections, HLA-A*24:02 may affect their protection from COVID-19.
  • Yanan Wu, Nianzhi Zhang, Keiichiro Hashimoto, Chun Xia, Johannes M Dijkstra
    Frontiers in immunology 12 621153-621153 2021年  
    Structures of peptide-loaded major histocompatibility complex class I (pMHC-I) and class II (pMHC-II) complexes are similar. However, whereas pMHC-II complexes include similar-sized IIα and IIβ chains, pMHC-I complexes include a heavy chain (HC) and a single domain molecule β2-microglobulin (β2-m). Recently, we elucidated several pMHC-I and pMHC-II structures of primitive vertebrate species. In the present study, a comprehensive comparison of pMHC-I and pMHC-II structures helps to understand pMHC structural evolution and supports the earlier proposed-though debated-direction of MHC evolution from class II-type to class I. Extant pMHC-II structures share major functional characteristics with a deduced MHC-II-type homodimer ancestor. Evolutionary establishment of pMHC-I presumably involved important new functions such as (i) increased peptide selectivity by binding the peptides in a closed groove (ii), structural amplification of peptide ligand sequence differences by binding in a non-relaxed fashion, and (iii) increased peptide selectivity by syngeneic heterotrimer complex formation between peptide, HC, and β2-m. These new functions were associated with structures that since their establishment in early pMHC-I have been very well conserved, including a shifted and reorganized P1 pocket (aka A pocket), and insertion of a β2-m hydrophobic knob into the peptide binding domain β-sheet floor. A comparison between divergent species indicates better sequence conservation of peptide binding domains among MHC-I than among MHC-II, agreeing with more demanding interactions within pMHC-I complexes. In lungfishes, genes encoding fusions of all MHC-IIα and MHC-IIβ extracellular domains were identified, and although these lungfish genes presumably derived from classical MHC-II, they provide an alternative mechanistic hypothesis for how evolution from class II-type to class I may have occurred.
  • J.M. Dijkstra, B. Dixon
    Immunogenetics 2020年12月  招待有り筆頭著者責任著者
  • Takuya Yamaguchi, Chia Jung Chang, Axel Karger, Markus Keller, Florian Pfaff, Eakapol Wangkahart, Tiehui Wang, Christopher J. Secombes, Azusa Kimoto, Mitsuru Furihata, Keiichiro Hashimoto, Uwe Fischer, Johannes M. Dijkstra
    Frontiers in Immunology 11 2020年10月29日  査読有り最終著者責任著者
  • Johannes M. Dijkstra, Keiichiro Hashimoto
    F1000Research 9 285-285 2020年7月17日  査読有り筆頭著者責任著者
    <ns4:p>SARS-CoV-2 is the coronavirus agent of the COVID-19 pandemic causing high mortalities. In contrast, the widely spread human coronaviruses OC43, HKU1, 229E, and NL63 tend to cause only mild symptoms. The present study shows, by <ns4:italic>in silico</ns4:italic> analysis, that these common human viruses are expected to induce immune memory against SARS-CoV-2 by sharing protein fragments (antigen epitopes) for presentation to the immune system by MHC class I. A list of such epitopes is provided. The number of these epitopes and the prevalence of the common coronaviruses suggest that a large part of the world population has some degree of specific immunity against SARS-CoV-2 already, even without having been infected by that virus. For inducing protection, booster vaccinations enhancing existing immunity are less demanding than primary vaccinations against new antigens. Therefore, for the discussion on vaccination strategies against COVID-19, the available immune memory against related viruses should be part of the consideration.</ns4:p>
  • Kohei Nishiya, Mai Sawada, Johannes M. Dijkstra, Jiro Miyamae, Masaharu Okano, Fumihiko Katakura, Tadaaki Moritomo
    Developmental & Comparative Immunology 108 103671-103671 2020年7月  査読有り
    Interleukin-3 (IL-3), IL-5, and granulocyte-macrophage colony-stimulating factor (GM-CSF) are related cytokines that signal through receptors possessing the β common (βc) chain. As a family, these cytokines combine rather non-specific hematopoietic growth factor properties with a special importance for eosinophils, basophils, and mast cells. In fish the cytokines of this family are called IL-5fam, and the present study, using carp, constitutes their first functional analysis. Carp il-5fam expression was enhanced by stimulation with phytohemagglutinin and killed bacteria. Reminiscent of mammalian IL-3/IL-5/GM-CSF family members, recombinant carp IL-5fam (rcIL-5fam) induced activation of transcription factor STAT5 and efficiently promoted proliferation and colony-formation of eosinophil/basophil/mast-cell type (EBM) granulocytes. Upon addition of recombinant carp βc the growth effect of rcIL-5fam was reduced, suggesting βc participation in the signaling route. In summary, despite differences in individual cytokines and cell populations, fish and mammalian IL-3/IL-5/GM-CSF family members share growth factor functions for non-neutrophil granulocytes.
  • Lizhen Ma, Nianzhi Zhang, Zehui Qu, Ruiying Liang, Lijie Zhang, Bing Zhang, Geng Meng, Johannes M. Dijkstra, Shen Li, Max Chun Xia
    The Journal of Immunology 204(1) 147-158 2020年1月1日  査読有り
  • Yamaguchi T, Takizawa F, Furihata M, Soto-Lampe V, Dijkstra JM, Fischer U
    Fish & shellfish immunology 95 422-439 2019年12月  査読有り
  • Kulski, Shiina, Dijkstra
    Cells 8(10) 1270-1270 2019年10月17日  査読有り招待有り最終著者
    The human Major Histocompatibility Complex (MHC) genes are part of the supra‐locus onchromosome 6p21 known as the human leukocyte antigen (HLA) system [...]
  • Yamaguchi T, Dijkstra JM
    Cells 8(4) 2019年4月  査読有り招待有り
  • Johannes M. Dijkstra, Takuya Yamaguchi
    Immunogenetics 71(3) 233-249 2019年3月  査読有り招待有り
  • Johannes M. Dijkstra, Takuya Yamaguchi, Unni Grimholt
    Immunogenetics 70(7) 459-476 2018年7月1日  査読有り
  • Zhaosan Chen, Nianzhi Zhang, Jianxun Qi, Rong Chen, Johannes M. Dijkstra, Xiaoying Li, Zhenbao Wang, Junya Wang, Yanan Wu, Chun Xia
    JOURNAL OF IMMUNOLOGY 199(10) 3668-3678 2017年11月  査読有り
  • Takuya Yamaguchi, Susann Schares, Uwe Fischer, Johannes M. Dijkstra
    DEVELOPMENTAL AND COMPARATIVE IMMUNOLOGY 65 268-279 2016年12月  査読有り
  • Takuya Yamaguchi, Fumio Takizawa, Uwe Fischer, Johannes M. Dijkstra
    Biology 4(4) 814-859 2015年11月17日  査読有り
  • Dijkstra JM, Alexander DB
    F1000Research 4 96 2015年4月22日  査読有り
  • Unni Grimholt, Kentaro Tsukamoto, Teruo Azuma, Jong Leong, Ben F. Koop, Johannes M. Dijkstra
    BMC EVOLUTIONARY BIOLOGY 15 32 2015年3月  査読有り
  • Johannes M. Dijkstra, Keith T. Ballingall
    F1000Research 3 160 2014年9月30日  査読有り
  • Johannes M. Dijkstra
    NATURE 511(7508) E7-E9 2014年7月  査読有り
  • Dijkstra JM, Takizawa F, Fischer U, Friedrich M, Soto-Lampe V, Lefèvre C, Lenk M, Karger A, Matsui T, Hashimoto K
    Immunogenetics 66(2) 93-103 2014年2月  査読有り
  • Fumio Takizawa, Kyosuke Araki, Maki Ohtani, Hideaki Toda, Yasutaka Saito, Veronica Soto Lampe, Johannes Martinus Dijkstra, Mitsuru Ototake, Tadaaki Moritomo, Teruyuki Nakanishi, Uwe Fischer
    FISH & SHELLFISH IMMUNOLOGY 36(1) 215-222 2014年1月  査読有り
  • Johannes M. Dijkstra, Unni Grimholt, Jong Leong, Ben F. Koop, Keiichiro Hashimoto
    BMC Evolutionary Biology 13(1) 260 2013年11月26日  査読有り
  • Takuya Yamaguchi, Fumihiko Katakura, Kazue Someya, Johannes Martinus Dijkstra, Tadaaki Moritomo, Teruyuki Nakanishi
    FISH & SHELLFISH IMMUNOLOGY 34(2) 433-442 2013年2月  査読有り
  • Craig E. Hughes, Uvaraj P. Radhakrishnan, Marie Lordkipanidze, Stuart Egginton, Johannes M. Dijkstra, Pudur Jagadeeswaran, Stephen P. Watson
    PLOS ONE 7(12) e52622 2012年12月  査読有り
  • Takizawa F, Dijkstra JM, Kotterba P, Korytář T, Kock H, Köllner B, Jaureguiberry B, Nakanishi T, Fischer U
    Developmental and comparative immunology 35(7) 752-+ 2011年7月  査読有り
  • Fumio Takizawa, Erling Olaf Koppang, Maki Ohtani, Teruyuki Nakanishi, Keiichiro Hashimoto, Uwe Fischer, Johannes Martinus Dijkstra
    MOLECULAR IMMUNOLOGY 48(12-13) 1360-1368 2011年7月  査読有り
  • Erling O. Koppang, Uwe Fischer, Lindsey Moore, Michael A. Tranulis, Johannes M. Dijkstra, Bernd Kollner, Laila Aune, Emilio Jirillo, Ivar Hordvik
    JOURNAL OF ANATOMY 217(6) 728-739 2010年12月  査読有り
  • Ken Ohashi, Fumio Takizawa, Norihiro Tokumaru, Chihaya Nakayasu, Hideaki Toda, Uwe Fischer, Tadaaki Moritomo, Keiichiro Hashimoto, Teruyuki Nakanishi, Johannes Martinus Dijkstra
    IMMUNOGENETICS 62(8) 543-559 2010年8月  査読有り
  • Nobuhiro Hayashi, Masami Takeuchi, Teruyuki Nakanishi, Keiichiro Hashimoto, Johannes Martinus Dijkstra
    FISH & SHELLFISH IMMUNOLOGY 28(1) 72-76 2010年1月  査読有り

講演・口頭発表等

 28

担当経験のある科目(授業)

 10

共同研究・競争的資金等の研究課題

 12

その他

 1
  • Editiorial Board member of the journal: Immunogenetics. Associate editor of the journal: Frontiers in Immunology. Previously, associate editor of the journal: BMC Genomics. Previously, curator of the fish MHC section of the IPD-MHC nomenclature database (http://www.ebi.ac.uk/ipd/mhc/fish/index.html). Guest editor of Cells (MDPI) Special issue in 2020 and 2022. Reviewer tasks for the journals: Nature Communications, PLOS ONE, PLOS Pathology, Journal of Immunology, Cells, Scientific Reports, Immunogenetics, Developmental & Comparative Immunology, Fish & Shellfish Immunology, Frontiers in Immunology, BMC Genomics, Aquaculture, Diseases of Aquatic Organisms, Journal of Virology, Journal of General Virology, and others