研究者業績

水島 恒裕

ミズシマ ツネヒロ  (Tsunehiro Mizushima)

基本情報

所属
兵庫県立大学 理学研究科 生命科学専攻 生体物質機能解析学部門 教授
学位
博士(理学)(大阪大学)

研究者番号
90362269
J-GLOBAL ID
200901074435540475
researchmap会員ID
1000366778

外部リンク

論文

 71
  • Takafumi Suzuki, Kenji Takagi, Tatsuro Iso, Huaichun Wen, Anqi Zhang, Tetsuya Hatakeyama, Hiraku Oshima, Tsunehiro Mizushima, Masayuki Yamamoto
    Redox Biology 103885-103885 2025年10月  査読有り責任著者
  • Yusuke Yamashita, Hideki Kosako, Takashi Kato, Izumi Sasaki, Sadahiro Iwabuchi, Tadashi Okamura, Misato Tane, Shotaro Tabata, Kazutaka Nakashima, Ken Tanaka, Kazunori Shiraishi, Yuki Uchihara, Daisuke Okuzaki, Atsushi Shibata, Tsunehiro Mizushima, Hiroaki Hemmi, Nobuo Kanazawa, Seiji Kodama, Kouichi Ohshima, Shinichi Hashimoto, Yoshio Fujitani, Takashi Sonoki, Shinobu Tamura, Tsuneyasu Kaisho
    2025年5月17日  
    Abstract Dysregulation of DNA double-strand break (DSB) repair leads to adaptive immunodeficiency, whereas the remaining lymphocytes are aberrantly activated and provoke inflammations. However, no model mice were available to consistently manifest inflammation under defective DSB repair. We generated mutant mice carrying a missense mutation p.W447C in the gene encoding DNA ligase IV (LIG4), critical for DSB repair.Lig4W447C/W447Cmice showed growth retardation and severe intestinal inflammations under adaptive immunodeficiency. The inflammations were featured by marked infiltration of T helper type 1 (Th1) cells and macrophages and was dependent on lymphocytes. WhenIfngwas deleted, Th2 and Th17 instead of Th1 cells drove the inflammations.Lig4W447C/W447Cmice showed expansion of oligoclonal T cells with T cell receptor α repertoire skewed towards more proximal 3’ V and 5’ J gene segments. Thus, our novel hypomorphicLig4mutant mice show that defective DSB repair leads to Th1-dependent intestinal inflammations under severe adaptive immunodeficiency.
  • Tadashi Satoh, Maho Yagi-Utsumi, Nozomi Ishii, Tsunehiro Mizushima, Hirokazu Yagi, Ryuichi Kato, Yuriko Tachida, Hiroaki Tateno, Ichiro Matsuo, Koichi Kato, Tadashi Suzuki, Yukiko Yoshida
    FEBS letters 2024年8月22日  
    The cytosolic peptide:N-glycanase (PNGase) is involved in the quality control of N-glycoproteins via the endoplasmic reticulum-associated degradation (ERAD) pathway. Mutations in the gene encoding cytosolic PNGase (NGLY1 in humans) cause NGLY1 deficiency. Recent findings indicate that the F-box protein FBS2 of the SCFFBS2 ubiquitin ligase complex can be a promising drug target for NGLY1 deficiency. Here, we determined the crystal structure of bovine FBS2 complexed with the adaptor protein SKP1 and a sugar ligand, Man3GlcNAc2, which corresponds to the core pentasaccharide of N-glycan. Our crystallographic data together with NMR data revealed the structural basis of disparate sugar-binding specificities in homologous FBS proteins and identified a potential druggable pocket for in silico docking studies. Our results provide a potential basis for the development of selective inhibitors against FBS2 in NGLY1 deficiency.
  • Kazuya Nishio, Tomoyuki Kawarasaki, Yuki Sugiura, Shunsuke Matsumoto, Ayano Konoshima, Yuki Takano, Mayuko Hayashi, Fumihiko Okumura, Takumi Kamura, Tsunehiro Mizushima, Kunio Nakatsukasa
    Science advances 9(15) eadf1956 2023年4月14日  査読有り責任著者
    Deficiencies in mitochondrial protein import are associated with a number of diseases. However, although nonimported mitochondrial proteins are at great risk of aggregation, it remains largely unclear how their accumulation causes cell dysfunction. Here, we show that nonimported citrate synthase is targeted for proteasomal degradation by the ubiquitin ligase SCFUcc1. Unexpectedly, our structural and genetic analyses revealed that nonimported citrate synthase appears to form an enzymatically active conformation in the cytosol. Its excess accumulation caused ectopic citrate synthesis, which, in turn, led to an imbalance in carbon flux of sugar, a reduction of the pool of amino acids and nucleotides, and a growth defect. Under these conditions, translation repression is induced and acts as a protective mechanism that mitigates the growth defect. We propose that the consequence of mitochondrial import failure is not limited to proteotoxic insults, but that the accumulation of a nonimported metabolic enzyme elicits ectopic metabolic stress.
  • Keito Hiragi, Akira Nishide, Kenji Takagi, Kazuhiro Iwai, Minsoo Kim, Tsunehiro Mizushima
    The Journal of Biochemistry 173(4) 317-326 2023年1月4日  査読有り責任著者
    Summary Pathogenic bacteria deliver virulence factors called effectors into host cells in order to facilitate infection. The Shigella effector proteins IpaH1.4 and IpaH2.5 are members of the “novel E3 ligase” (NEL)-type bacterial E3 ligase family. These proteins ubiquitinate the linear ubiquitin assembly complex (LUBAC) to inhibit nuclear factor (NF)-κB activation and, concomitantly, the inflammatory response. However, the molecular mechanisms underlying the interaction and recognition between IpaH1.4 and IpaH2.5 and LUBAC is unclear. Here we present the crystal structures of the substrate-recognition domains of IpaH1.4 and IpaH2.5 at resolutions of 1.4 and 3.4 Å, respectively. The LUBAC-binding site on IpaH1.4 was predicted based on structural comparisons with the structures of other NEL-type E3s. Structural and biochemical data were collected and analyzed to determine the specific residues of IpaH1.4 that are involved in interactions with LUBAC and influence NF-κB signaling. The new structural insight presented here demonstrates how bacterial pathogens target innate immune signaling pathways.
  • Akira Nishide, Kenji Takagi, Minsoo Kim, Tsunehiro Mizushima
    2022年2月15日  
  • Nobuo Kanazawa, Hiroaki Hemmi, Noriko Kinjo, Hidenori Ohnishi, Jun Hamazaki, Hiroyuki Mishima, Akira Kinoshita, Tsunehiro Mizushima, Satoru Hamada, Kazuya Hamada, Norio Kawamoto, Saori Kadowaki, Yoshitaka Honda, Kazushi Izawa, Ryuta Nishikomori, Miyuki Tsumura, Yusuke Yamashita, Shinobu Tamura, Takashi Orimo, Toshiya Ozasa, Takashi Kato, Izumi Sasaki, Yuri Fukuda-Ohta, Naoko Wakaki-Nishiyama, Yutaka Inaba, Kayo Kunimoto, Satoshi Okada, Takeshi Taketani, Koichi Nakanishi, Shigeo Murata, Koh-Ichiro Yoshiura, Tsuneyasu Kaisho
    Nature communications 12(1) 6819-6819 2021年11月24日  査読有り
    Impaired proteasome activity due to genetic variants of certain subunits might lead to proteasome-associated autoinflammatory syndromes (PRAAS). Here we report a de novo heterozygous missense variant of the PSMB9 proteasome subunit gene in two unrelated Japanese infants resulting in amino acid substitution of the glycine (G) by aspartic acid (D) at position 156 of the encoded protein β1i. In addition to PRAAS-like manifestations, these individuals suffer from pulmonary hypertension and immunodeficiency, which are distinct from typical PRAAS symptoms. The missense variant results in impaired immunoproteasome maturation and activity, yet ubiquitin accumulation is hardly detectable in the patients. A mouse model of the heterozygous human genetic variant (Psmb9G156D/+) recapitulates the proteasome defects and the immunodeficiency phenotype of patients. Structurally, PSMB9 G156D interferes with the β-ring-βring interaction of the wild type protein that is necessary for 20S proteasome formation. We propose the term, proteasome-associated autoinflammatory syndrome with immunodeficiency (PRAAS-ID), to indicate a separate category of autoinflammatory diseases, similar to, but distinct from PRAAS, that describes the patients in this study.
  • Yuta Horie, Takafumi Suzuki, Jin Inoue, Tatsuro Iso, Geoffrey Wells, Terry W Moore, Tsunehiro Mizushima, Albena T Dinkova-Kostova, Takuma Kasai, Takashi Kamei, Seizo Koshiba, Masayuki Yamamoto
    Communications biology 4(1) 576-576 2021年5月14日  査読有り
    The Keap1-Nrf2 system is central for mammalian cytoprotection against various stresses and a drug target for disease prevention and treatment. One model for the molecular mechanisms leading to Nrf2 activation is the Hinge-Latch model, where the DLGex-binding motif of Nrf2 dissociates from Keap1 as a latch, while the ETGE motif remains attached to Keap1 as a hinge. To overcome the technical difficulties in examining the binding status of the two motifs during protein-protein interaction (PPI) simultaneously, we utilized NMR spectroscopy titration experiments. Our results revealed that latch dissociation is triggered by low-molecular-weight Keap1-Nrf2 PPI inhibitors and occurs during p62-mediated Nrf2 activation, but not by electrophilic Nrf2 inducers. This study demonstrates that Keap1 utilizes a unique Hinge-Latch mechanism for Nrf2 activation upon challenge by non-electrophilic PPI-inhibiting stimuli, and provides critical insight for the pharmacological development of next-generation Nrf2 activators targeting the Keap1-Nrf2 PPI.
  • Keito Hiragi, Kazuya Nishio, Shu Moriyama, Tasuku Hamaguchi, Akira Mizoguchi, Koji Yonekura, Kazutoshi Tani, Tsunehiro Mizushima
    Journal of Structural Biology 107748-107748 2021年5月  査読有り責任著者
  • Shun Kageyama, Sigurdur Runar Gudmundsson, Yu-Shin Sou, Yoshinobu Ichimura, Naoki Tamura, Saiko Kazuno, Takashi Ueno, Yoshiki Miura, Daisuke Noshiro, Manabu Abe, Tsunehiro Mizushima, Nobuaki Miura, Shujiro Okuda, Hozumi Motohashi, Jin-A Lee, Kenji Sakimura, Tomoyuki Ohe, Nobuo N Noda, Satoshi Waguri, Eeva-Liisa Eskelinen, Masaaki Komatsu
    Nature communications 12(1) 16-16 2021年1月4日  査読有り
    Autophagy contributes to the selective degradation of liquid droplets, including the P-Granule, Ape1-complex and p62/SQSTM1-body, although the molecular mechanisms and physiological relevance of selective degradation remain unclear. In this report, we describe the properties of endogenous p62-bodies, the effect of autophagosome biogenesis on these bodies, and the in vivo significance of their turnover. p62-bodies are low-liquidity gels containing ubiquitin and core autophagy-related proteins. Multiple autophagosomes form on the p62-gels, and the interaction of autophagosome-localizing Atg8-proteins with p62 directs autophagosome formation toward the p62-gel. Keap1 also reversibly translocates to the p62-gels in a p62-binding dependent fashion to activate the transcription factor Nrf2. Mice deficient for Atg8-interaction-dependent selective autophagy show that impaired turnover of p62-gels leads to Nrf2 hyperactivation in vivo. These results indicate that p62-gels are not simple substrates for autophagy but serve as platforms for both autophagosome formation and anti-oxidative stress.
  • Tadashi Satoh, Miho Nishio, Kousuke Suzuki, Maho Yagi-Utsumi, Yukiko Kamiya, Tsunehiro Mizushima, Koichi Kato
    Acta crystallographica. Section F, Structural biology communications 76(Pt 5) 216-221 2020年5月1日  査読有り
    The transmembrane intracellular lectin ER-Golgi intermediate compartment protein 53 (ERGIC-53) and the soluble EF-hand multiple coagulation factor deficiency protein 2 (MCFD2) form a complex that functions as a cargo receptor, trafficking various glycoproteins between the endoplasmic reticulum (ER) and the Golgi apparatus. It has been demonstrated that the carbohydrate-recognition domain (CRD) of ERGIC-53 (ERGIC-53CRD) interacts with N-linked glycans on cargo glycoproteins, whereas MCFD2 recognizes polypeptide segments of cargo glycoproteins. Crystal structures of ERGIC-53CRD complexed with MCFD2 and mannosyl oligosaccharides have revealed protein-protein and protein-sugar binding modes. In contrast, the polypeptide-recognition mechanism of MCFD2 remains largely unknown. Here, a 1.60 Å resolution crystal structure of the ERGIC-53CRD-MCFD2 complex is reported, along with three other crystal forms. Comparison of these structures with those previously reported reveal that MCFD2, but not ERGIC-53-CRD, exhibits significant conformational plasticity that may be relevant to its accommodation of various polypeptide ligands.
  • Midori Takeda, Tohru Tezuka, Minsoo Kim, Jungmi Choi, Yuki Oichi, Hatasu Kobayashi, Kouji H Harada, Tsunehiro Mizushima, Shigeru Taketani, Akio Koizumi, Shohab Youssefian
    Biochemical and biophysical research communications 525(3) 668-674 2020年3月2日  査読有り
    Moyamoya disease (MMD) is a cerebrovascular disease characterized by progressive occlusion of the internal carotid arteries. Genetic studies originally identified RNF213 as an MMD susceptibility gene that encodes a large 591 kDa protein with a functional RING domain and dual AAA+ ATPase domains. As the functions of RNF213 and its relationship to MMD onset are unknown, we set out to characterize the ubiquitin ligase activity of RNF213, and the effects of MMD patient mutations on these activities and on other cellular processes. In vitro ubiquitination assays, using the RNF213 RING domain, identified Ubc13/Uev1A as a key ubiquitin conjugating enzyme that together generate K63-linked polyubiquitin chains. However, nearly all MMD patient mutations in the RING domain greatly reduced this activity. When full-length proteins were overexpressed in HEK293T cells, patient mutations that abolished the ubiquitin ligase activities conversely enhanced nuclear factor κB (NFκB) activation and induced apoptosis accompanied with Caspase-3 activation. These induced activities were dependent on the RNF213 AAA+ domain. Our results suggest that the NFκB- and apoptosis-inducing functions of RNF213 may be negatively regulated by its ubiquitin ligase activity and that disruption of this regulation could contribute towards MMD onset.
  • Kazuya Nishio, Tsunehiro Mizushima
    Acta crystallographica. Section F, Structural biology communications 76(Pt 3) 109-115 2020年3月1日  査読有り
    Citrate synthase (CS) catalyzes the conversion of oxaloacetate and acetyl coenzyme A into citrate and coenzyme A in the mitochondrial tricarboxylic acid (TCA) cycle. In plants, mitochondrial metabolism, including the TCA cycle, occurs in interaction with photosynthetic metabolism. The controlled regulation of several enzymes in the TCA cycle, such as CS, is important in plants. Here, the first crystal structure of a plant mitochondrial CS, CSY4 from Arabidopsis thaliana (AtCSY4), has been determined. Structural comparison of AtCSY4 with mitochondrial CSs revealed a high level of similarity. Inhibition analysis showed a similar manner of inhibition as in mitochondrial CSs. The effect of oxidation on one of a pair of cysteine residues in AtCSY4 was speculated upon based on the folded structure.
  • Yoshida Y, Mizushima T, Tanaka K
    Frontiers in physiology 10 104 2019年  査読有り
  • Moriyama S, Nishio K, Mizushima T
    Acta Cryst F 74(10) 617-624 2018年10月  査読有り
  • Nahorski MS, Maddirevula S, Ishimura R, Alsahli S, Brady AF, Begemann A, Mizushima T, Guzmán-Vega FJ, Obata M, Ichimura Y, Alsaif HS, Anazi S, Ibrahim N, Abdulwahab F, Hashem M, Monies D, Abouelhoda M, Meyer BF, Alfadhel M, Eyaid W, Zweier M, Steindl K, Rauch A, Arold ST, Woods CG, Komatsu M, Alkuraya FS
    Brain 141(7) 1934-1945 2018年7月  査読有り
  • Hiroaki Fujita, Akira Tokunaga, Satoshi Shimizu, Amanda L. Whiting, Francisco Aguilar-Alonso, Kenji Takagi, Erik Walinda, Yoshiteru Sasaki, Taketo Shimokawa, Tsunehiro Mizushima, Izuru Ohki, Mariko Ariyoshi, Hidehito Tochio, Federico Bernal, Masahiro Shirakawa, Kazuhiro Iwai
    Cell Reports 23(4) 1192-1204 2018年4月24日  査読有り
  • Shiho Suzuki, Toshihiko Suzuki, Hitomi Mimuro, Tsunehiro Mizushima, Chihiro Sasakawa
    EMBO Reports 19(1) 89-101 2018年  査読有り
  • Noriyuki Matsuda, Mayumi Kimura, Bruno Barros Queliconi, Waka Kojima, Masaki Mishima, Kenji Takagi, Fumika Koyano, Koji Yamano, Tsunehiro Mizushima, Yutaka Ito, Keiji Tanaka
    SCIENTIFIC REPORTS 7(1) 12816 2017年10月  査読有り
  • Kazuya Nishio, Yukiko Yoshida, Keiji Tanaka, Tsunehiro Mizushima
    ACTA CRYSTALLOGRAPHICA SECTION F-STRUCTURAL BIOLOGY COMMUNICATIONS 72(Pt 8) 619-626 2016年8月  査読有り
  • Tetsuya Saito, Yoshinobu Ichimura, Keiko Taguchi, Takafumi Suzuki, Tsunehiro Mizushima, Kenji Takagi, Yuki Hirose, Masayuki Nagahashi, Tetsuro Iso, Toshiaki Fukutomi, Maki Ohishi, Keiko Endo, Takefumi Uemura, Yasumasa Nishito, Shujiro Okuda, Miki Obata, Tsuguka Kouno, Riyo Imamura, Yukio Tada, Rika Obata, Daisuke Yasuda, Kyoko Takahashi, Tsutomu Fujimura, Jingbo Pi, Myung-Shik Lee, Takashi Ueno, Tomoyuki Ohe, Tadahiko Mashino, Toshifumi Wakai, Hirotatsu Kojima, Takayoshi Okabe, Tetsuo Nagano, Hozumi Motohashi, Satoshi Waguri, Tomoyoshi Soga, Masayuki Yamamoto, Keiji Tanaka, Masaaki Komatsu
    NATURE COMMUNICATIONS 7 12030 2016年6月  査読有り
  • Kenji Takagi, Minsoo Kim, Chihiro Sasakawa, Tsunehiro Mizushima
    ACTA CRYSTALLOGRAPHICA SECTION F-STRUCTURAL BIOLOGY COMMUNICATIONS 72(Pt 4) 269-275 2016年4月  査読有り
  • Hirofumi Tanaka, Toshiki Takahashi, Yiming Xie, Ryosuke Minami, Yuko Yanagi, Mizuki Hayashishita, Rigel Suzuki, Naoto Yokota, Masumi Shimada, Tsunehiro Mizushima, Naoyuki Kuwabara, Ryuichi Kato, Hiroyuki Kawahara
    FEBS JOURNAL 283(4) 662-677 2016年2月  査読有り
  • Hallvard L. Olsvik, Trond Lamark, Kenji Takagi, Kenneth Bowitz Larsen, Gry Evjen, Aud Overvatn, Tsunehiro Mizushima, Terje Johansen
    JOURNAL OF BIOLOGICAL CHEMISTRY 290(49) 29361-29374 2015年12月  査読有り
  • Yoko Kimura, Mirai Tanigawa, Junko Kawawaki, Kenji Takagi, Tsunehiro Mizushima, Tatsuya Maeda, Keiji Tanaka
    EUKARYOTIC CELL 14(10) 976-982 2015年10月  査読有り
  • Taichi Kumanomidou, Kazuya Nishio, Kenji Takagi, Tomomi Nakagawa, Atsuo Suzuki, Takashi Yamane, Fuminori Tokunaga, Kazuhiro Iwai, Arisa Murakami, Yukiko Yoshida, Keiji Tanaka, Tsunehiro Mizushima
    PLOS ONE 10(10) e0140366 2015年10月  査読有り
  • Yashiroda H, Toda Y, Otsu S, Takagi K, Mizushima T, Murata S
    Molecular and cellular biology 35(1) 141-152 2015年1月  査読有り
  • Uekusa Y, Okawa K, Yagi-Utsumi M, Serve O, Nakagawa Y, Mizushima T, Yagi H, Saeki Y, Tanaka K, Kato K
    Biomolecular NMR assignments 8(2) 383-6 2014年10月  査読有り
  • Kim M, Otsubo R, Morikawa H, Nishide A, Takagi K, Sasakawa C, Mizushima T
    Cells 3(3) 848-864 2014年8月  査読有り
  • Takagi K, Saeki Y, Yashiroda H, Yagi H, Kaiho A, Murata S, Yamane T, Tanaka K, Mizushima T, Kato K
    Biochemical and biophysical research communications 450(2) 1110-4 2014年7月25日  査読有り
  • Tadashi Satoh, Yasushi Saeki, Takeshi Hiromoto, Ying-Hui Wang, Yoshinori Uekusa, Hirokazu Yagi, Hidehito Yoshihara, Maho Yagi-Utsumi, Tsunehiro Mizushima, Keiji Tanaka, Koichi Kato
    Structure (London, England : 1993) 22(5) 731-43 2014年5月6日  査読有り
    Proteasome formation does not occur due to spontaneous self-organization but results from a highly ordered process assisted by several assembly chaperones. The assembly of the proteasome ATPase subunits is assisted by four client-specific chaperones, of which three have been structurally resolved. Here, we provide the structural basis for the working mechanisms of the last, hereto structurally uncharacterized assembly chaperone, Nas2. We revealed that Nas2 binds to the Rpt5 subunit in a bivalent mode: the N-terminal helical domain of Nas2 masks the Rpt1-interacting surface of Rpt5, whereas its C-terminal PDZ domain caps the C-terminal proteasome-activating motif. Thus, Nas2 operates as a proteasome activation blocker, offering a checkpoint during the formation of the 19S ATPase prior to its docking onto the proteolytic 20S core particle.
  • Alf Hakon Lystad, Yoshinobu Ichimura, Kenji Takagi, Yinjie Yang, Serhiy Pankiv, Yumi Kanegae, Shun Kageyama, Mariko Suzuki, Izumu Saito, Tsunehiro Mizushima, Masaaki Komatsu, Anne Simonsen
    EMBO REPORTS 15(5) 557-565 2014年5月  査読有り
  • Toshiaki Fukutomi, Kenji Takagi, Tsunehiro Mizushima, Noriaki Ohuchi, Masayuki Yamamoto
    MOLECULAR AND CELLULAR BIOLOGY 34(5) 832-846 2014年3月  査読有り
  • Yoshinobu Ichimura, Satoshi Waguri, Yu-shin Sou, Shun Kageyama, Jun Hasegawa, Ryosuke Ishimura, Tetsuya Saito, Yinjie Yang, Tsuguka Kouno, Toshiaki Fukutomi, Takayuki Hoshii, Atsushi Hirao, Kenji Takagi, Tsunehiro Mizushima, Hozumi Motohashi, Myung-Shik Lee, Tamotsu Yoshimori, Keiji Tanaka, Masayuki Yamamoto, Masaaki Komatsu
    MOLECULAR CELL 51(5) 618-631 2013年9月  査読有り
  • Takagi K, Mizushima T
    Seikagaku. The Journal of Japanese Biochemical Society 85(9) 789-794 2013年9月  査読有り
  • Kenji Takagi, Tsunehiro Mizushima
    Autophagy: Cancer, Other Pathologies, Inflammation, Immunity, Infection, and Aging 1 35-44 2013年8月22日  査読有り
  • Akira Nishide, Minsoo Kim, Kenji Takagi, Ai Himeno, Takahito Sanada, Chihiro Sasakawa, Tsunehiro Mizushima
    JOURNAL OF MOLECULAR BIOLOGY 425(15) 2623-2631 2013年8月  査読有り
  • Taira Kobayashi, Michinaga Ogawa, Takahito Sanada, Hitomi Mimuro, Minsoo Kim, Hiroshi Ashida, Reiko Akakura, Mitsutaka Yoshida, Magdalena Kawalec, Jean-Marc Reichhart, Tsunehiro Mizushima, Chihiro Sasakawa
    CELL HOST & MICROBE 13(5) 570-583 2013年5月  査読有り
  • Kentaro Kumoi, Tadashi Satoh, Kazuyoshi Murata, Takeshi Hiromoto, Tsunehiro Mizushima, Yukiko Kamiya, Masanori Noda, Susumu Uchiyama, Hirokazu Yagi, Koichi Kato
    PloS one 8(3) e60294 2013年  査読有り
    Assembly of the eukaryotic 20S proteasome is an ordered process involving several proteins operating as proteasome assembly factors including PAC1-PAC2 but archaeal 20S proteasome subunits can spontaneously assemble into an active cylindrical architecture. Recent bioinformatic analysis identified archaeal PAC1-PAC2 homologs PbaA and PbaB. However, it remains unclear whether such assembly factor-like proteins play an indispensable role in orchestration of proteasome subunits in archaea. We revealed that PbaB forms a homotetramer and exerts a dual function as an ATP-independent proteasome activator and a molecular chaperone through its tentacle-like C-terminal segments. Our findings provide insights into molecular evolution relationships between proteasome activators and assembly factors.
  • Hirokazu Yagi, Kazuhiro Ishimoto, Takeshi Hiromoto, Hiroaki Fujita, Tsunehiro Mizushima, Yoshinori Uekusa, Maho Yagi-Utsumi, Eiji Kurimoto, Masanori Noda, Susumu Uchiyama, Fuminori Tokunaga, Kazuhiro Iwai, Koichi Kato
    EMBO reports 13(5) 462-8 2012年5月1日  査読有り
    HOIL-1L and its binding partner HOIP are essential components of the E3-ligase complex that generates linear ubiquitin (Ub) chains, which are critical regulators of NF-κB activation. Using crystallographic and mutational approaches, we characterize the unexpected structural basis for the specific interaction between the Ub-like domain (UBL) of HOIL-1L and the Ub-associated domain (UBA) of HOIP. Our data indicate the functional significance of this non-canonical mode of UBA-UBL interaction in E3 complex formation and subsequent NF-κB activation. This study highlights the versatility and specificity of protein-protein interactions involving Ub/UBLs and their cognate proteins.
  • Kim S, Nishide A, Saeki Y, Takagi K, Tanaka K, Kato K, Mizushima T
    Acta crystallographica. Section F, Structural biology and crystallization communications 68(Pt 5) 517-521 2012年5月  査読有り
  • Kenji Takagi, Sangwoo Kim, Haruka Yukii, Mika Ueno, Ryo Morishita, Yaeta Endo, Koichi Kato, Keiji Tanaka, Yasushi Saeki, Tsunehiro Mizushima
    JOURNAL OF BIOLOGICAL CHEMISTRY 287(15) 12172-12182 2012年4月  査読有り
  • Keiji Tanaka, Tsunehiro Mizushima, Yasushi Saeki
    BIOLOGICAL CHEMISTRY 393(4) 217-234 2012年4月  査読有り
  • Takahito Sanada, Minsoo Kim, Hitomi Mimuro, Masato Suzuki, Michinaga Ogawa, Akiho Oyama, Hiroshi Ashida, Taira Kobayashi, Tomohiro Koyama, Shinya Nagai, Yuri Shibata, Jin Gohda, Jun-ichiro Inoue, Tsunehiro Mizushima, Chihiro Sasakawa
    NATURE 483(7391) 623-U149 2012年3月  査読有り
  • Sanada T, Kim M, Mimuro H, Ashida H, Ogawa M, Mizushima T, Sasakawa C
    Virulence 3(6) 518-521 2012年  査読有り
  • Tsunehiro Mizushima, Hirokazu Yagi, Emi Takemoto, Mami Shibata-Koyama, Yuya Isoda, Shigeru Iida, Kazuhiro Masuda, Mitsuo Satoh, Koichi Kato
    Genes to cells : devoted to molecular & cellular mechanisms 16(11) 1071-80 2011年11月  査読有り
    Removal of the fucose residue from the N-glycans of the Fc portion of immunoglobulin G (IgG) results in a dramatic enhancement of antibody-dependent cellular cytotoxicity (ADCC) through improved affinity for Fcγ receptor IIIa (FcγRIIIa). Here, we present the 2.2-Å structure of the complex formed between nonfucosylated IgG1-Fc and a soluble form of FcγRIIIa (sFcγRIIIa) with two N-glycosylation sites. The crystal structure shows that one of the two N-glycans of sFcγRIIIa mediates the interaction with nonfucosylated Fc, thereby stabilizing the complex. However, fucosylation of the Fc N-glycans inhibits this interaction, because of steric hindrance, and furthermore, negatively affects the dynamics of the receptor binding site. Our results offer a structural basis for improvement in ADCC of therapeutic antibodies by defucosylation.
  • Takashi Hirano, Olivier Serve, Maho Yagi-Utsumi, Emi Takemoto, Takeshi Hiromoto, Tadashi Satoh, Tsunehiro Mizushima, Koichi Kato
    JOURNAL OF BIOLOGICAL CHEMISTRY 286(43) 37496-37502 2011年10月  査読有り
  • Kazuhiko Arima, Akira Kinoshita, Hiroyuki Mishima, Nobuo Kanazawa, Takeumi Kaneko, Tsunehiro Mizushima, Kunihiro Ichinose, Hideki Nakamura, Akira Tsujino, Atsushi Kawakami, Masahiro Matsunaka, Shimpei Kasagi, Seiji Kawano, Shunichi Kumagai, Koichiro Ohmura, Tsuneyo Mimori, Makito Hirano, Satoshi Ueno, Keiko Tanaka, Masami Tanaka, Itaru Toyoshima, Hirotoshi Sugino, Akio Yamakawa, Keiji Tanaka, Norio Niikawa, Fukumi Furukawa, Shigeo Murata, Katsumi Eguchi, Hiroaki Ida, Koh-ichiro Yoshiura
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA 108(36) 14914-14919 2011年9月  査読有り
  • Charles B. C. Cielo, Seiji Okazaki, Atsuo Suzuki, Tsunehiro Mizushima, Ryoji Masui, Seiki Kuramitsu, Takashi Yamane
    ACTA CRYSTALLOGRAPHICA SECTION F-STRUCTURAL BIOLOGY AND CRYSTALLIZATION COMMUNICATIONS 66(Pt 4) 397-400 2010年4月  査読有り
  • Miho Nishio, Yukiko Kamiya, Tsunehiro Mizushima, Soichi Wakatsuki, Hiroaki Sasakawa, Kazuo Yamamoto, Susumu Uchiyama, Masanori Noda, Adam R. McKay, Kiichi Fukui, Hans-Peter Hauri, Koichi Kato
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA 107(9) 4034-4039 2010年3月  査読有り

共同研究・競争的資金等の研究課題

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