研究者業績

久保 稔

クボ ミノル  (Minoru Kubo)

基本情報

所属
兵庫県立大学 大学院理学研究科 生命科学専攻 生体物質構造解析学部門 教授
理化学研究所 客員研究員
学位
博士(理学)(2003年3月 北海道大学)

研究者番号
90392878
J-GLOBAL ID
200901071216606810
researchmap会員ID
1000309450

Minoru Kubo received his Ph.D. in computational chemistry from Hokkaido University in 2003 under the supervision of Prof. Etsuro Ito. After working on ultrafast spectroscopy as a JSPS Young Research Fellow (PD), he started time-resolved Raman spectroscopy with Prof. Teizo Kitagawa at Okazaki Institute for Integrative Bioscience in 2004. In 2006, he moved to Prof. Paul M. Champion's group at Northeastern University as a JSPS overseas research fellow. In 2008, he started time-resolved IR spectroscopy with Prof. Takashi Ogura at University of Hyogo as a research assistant professor. In 2012, he started time-resolved XFEL crystallography combined with time-resolved in-crystallo spectroscopy with Prof. Yoshitsugu Shiro at RIKEN as research scientist and senior research scientist. In 2018, he moved to University of Hyogo as a professor. His research interests include dynamic structural biology.


論文

 89
  • Daichi Yamada, Ai Kadono, Tatsumi Maeno, Wataru Sato, Sachiko Yanagisawa, Toshihiko Hamamura, Yasuteru Shigeta, Junpei Yamamoto, Minoru Kubo
    Communications Chemistry 8 256 2025年8月29日  査読有り最終著者責任著者
  • Atsuki Nakagami, Takehiko Tosha, Masaki Horitani, Koji Oohora, Takashi Hayashi, Wataru Sato, Minoru Kubo, Masahito Kodera, Hiroaki Kitagishi
    Inorganic Chemistry 64 13973-13985 2025年6月29日  査読有り
  • Takahiko Kojima, Tomoki Takaoka, Yusuke Chiba, Hiroaki Kotani, Hiroto Fujisaki, Tomoya Ishizuka, Sachiko Yanagisawa, Minoru Kubo, Yoshihito Shiota, Kazunari Yoshizawa
    Inorganic Chemistry 64(17) 8620-8629 2025年4月19日  査読有り
  • Satoshi Nagao, Wako Kuwano, Takehiko Tosha, Keitaro Yamashita, Joshua Kyle Stanfield, Chie Kasai, Shinya Ariyasu, Kunio Hirata, Go Ueno, Hironori Murakami, Hideo Ago, Masaki Yamamoto, Osami Shoji, Hiroshi Sugimoto, Minoru Kubo
    Communications Chemistry 8 63 2025年3月12日  査読有り最終著者責任著者
  • Yuki Tanaka, Osamu Iwanaga, Kyosuke Fujikawa, Seina Shinomiya, Hiroaki Kitagishi, Sachiko Yanagisawa, Minoru Kubo, Tetsuya Kambe, Shigenobu Masaoka, Masahito Kodera
    Dalton Transactions 54(32) 12130-12134 2025年  査読有り
    New μ-OH-μ-O2-Co(iii)2 complexes with 6-hpa ligand were synthesized and structurally characterized. The 6-hpa ligand facilitates O–O bond formation to enhance the catalytic activity in O2 evolution via electrochemical water oxidation.
  • Sachiko Yanagisawa, Takuto Kamei, Atsuhiro Shimada, Stephanie Gladyck, Siddhesh Aras, Maik Hüttemann, Lawrence I. Grossman, Minoru Kubo
    Journal of Inorganic Biochemistry 260 112673 2024年11月  査読有り最終著者責任著者
  • Kaho Ueda, Wataru Sato, Sachiko Yanagisawa, Minoru Kubo, Masahiko Hada, Hiroshi Fujii
    Journal of Inorganic Biochemistry 255 112544 2024年6月  査読有り
  • Hongjie Li, Yoshiki Nakajima, Eriko Nango, Shigeki Owada, Daichi Yamada, Kana Hashimoto, Fangjia Luo, Rie Tanaka, Fusamichi Akita, Koji Kato, Jungmin Kang, Yasunori Saitoh, Shunpei Kishi, Huaxin Yu, Naoki Matsubara, Hajime Fujii, Michihiro Sugahara, Mamoru Suzuki, Tetsuya Masuda, Tetsunari Kimura, Tran Nguyen Thao, Shinichiro Yonekura, Long-Jiang Yu, Takehiko Tosha, Kensuke Tono, Yasumasa Joti, Takaki Hatsui, Makina Yabashi, Minoru Kubo, So Iwata, Hiroshi Isobe, Kizashi Yamaguchi, Michihiro Suga, Jian-Ren Shen
    Nature 626(7999) 670-677 2024年1月31日  査読有り
    Abstract Photosystem II (PSII) catalyses the oxidation of water through a four-step cycle of Si states (i = 0–4) at the Mn4CaO5 cluster1–3, during which an extra oxygen (O6) is incorporated at the S3 state to form a possible dioxygen4–7. Structural changes of the metal cluster and its environment during the S-state transitions have been studied on the microsecond timescale. Here we use pump-probe serial femtosecond crystallography to reveal the structural dynamics of PSII from nanoseconds to milliseconds after illumination with one flash (1F) or two flashes (2F). YZ, a tyrosine residue that connects the reaction centre P680 and the Mn4CaO5 cluster, showed structural changes on a nanosecond timescale, as did its surrounding amino acid residues and water molecules, reflecting the fast transfer of electrons and protons after flash illumination. Notably, one water molecule emerged in the vicinity of Glu189 of the D1 subunit of PSII (D1-E189), and was bound to the Ca2+ ion on a sub-microsecond timescale after 2F illumination. This water molecule disappeared later with the concomitant increase of O6, suggesting that it is the origin of O6. We also observed concerted movements of water molecules in the O1, O4 and Cl-1 channels and their surrounding amino acid residues to complete the sequence of electron transfer, proton release and substrate water delivery. These results provide crucial insights into the structural dynamics of PSII during S-state transitions as well as O–O bond formation.
  • Alexander M. Wolff, Eriko Nango, Iris D. Young, Aaron S. Brewster, Minoru Kubo, Takashi Nomura, Michihiro Sugahara, Shigeki Owada, Benjamin A. Barad, Kazutaka Ito, Asmit Bhowmick, Sergio Carbajo, Tomoya Hino, James M. Holton, Dohyun Im, Lee J. O’Riordan, Tomoyuki Tanaka, Rie Tanaka, Raymond G. Sierra, Fumiaki Yumoto, Kensuke Tono, So Iwata, Nicholas K. Sauter, James S. Fraser, Michael C. Thompson
    Nature Chemistry 15(11) 1549-1558 2023年9月18日  査読有り
    Abstract Understanding and controlling protein motion at atomic resolution is a hallmark challenge for structural biologists and protein engineers because conformational dynamics are essential for complex functions such as enzyme catalysis and allosteric regulation. Time-resolved crystallography offers a window into protein motions, yet without a universal perturbation to initiate conformational changes the method has been limited in scope. Here we couple a solvent-based temperature jump with time-resolved crystallography to visualize structural motions in lysozyme, a dynamic enzyme. We observed widespread atomic vibrations on the nanosecond timescale, which evolve on the submillisecond timescale into localized structural fluctuations that are coupled to the active site. An orthogonal perturbation to the enzyme, inhibitor binding, altered these dynamics by blocking key motions that allow energy to dissipate from vibrations into functional movements linked to the catalytic cycle. Because temperature jump is a universal method for perturbing molecular motion, the method demonstrated here is broadly applicable for studying protein dynamics.
  • Shinya Ariyasu, Kai Yonemura, Chie Kasai, Yuichiro Aiba, Hiroki Onoda, Yuma Shisaka, Hiroshi Sugimoto, Takehiko Tosha, Minoru Kubo, Takashi Kamachi, Kazunari Yoshizawa, Osami Shoji
    ACS Catalysis 13 8613-8623 2023年6月14日  査読有り
  • Yoshiaki Kokubo, Kazuki Tsuzuki, Hikari Sugiura, Shunsuke Yomura, Yuko Wasada-Tsutsui, Tomohiro Ozawa, Sachiko Yanagisawa, Minoru Kubo, Tomoyuki Takeyama, Takahide Yamaguchi, Yuichi Shimazaki, Shinichi Kugimiya, Hideki Masuda, Yuji Kajita
    Inorganic Chemistry 62(14) 5320-5333 2023年3月27日  査読有り
  • Hanae Takeda, Kanji Shimba, Masaki Horitani, Tetsunari Kimura, Takashi Nomura, Minoru Kubo, Yoshitsugu Shiro, Takehiko Tosha
    The Journal of Physical Chemistry B 127(4) 846-854 2023年1月5日  査読有り
  • Yuya Nishida, Sachiko Yanagisawa, Rikuri Morita, Hideki Shigematsu, Kyoko Shinzawa-Itoh, Hitomi Yuki, Satoshi Ogasawara, Ken Shimuta, Takashi Iwamoto, Chisa Nakabayashi, Waka Matsumura, Hisakazu Kato, Chai Gopalasingam, Takemasa Nagao, Tasneem Qaqorh, Yusuke Takahashi, Satoru Yamazaki, Katsumasa Kamiya, Ryuhei Harada, Nobuhiro Mizuno, Hideyuki Takahashi, Yukihiro Akeda, Makoto Ohnishi, Yoshikazu Ishii, Takashi Kumasaka, Takeshi Murata, Kazumasa Muramoto, Takehiko Tosha, Yoshitsugu Shiro, Teruki Honma, Yasuteru Shigeta, Minoru Kubo, Seiji Takashima, Yasunori Shintani
    Nature Communications 13(1) 7591 2022年12月8日  査読有り
    Abstract Antimicrobial resistance (AMR) is a global health problem. Despite the enormous efforts made in the last decade, threats from some species, including drug-resistant Neisseria gonorrhoeae, continue to rise and would become untreatable. The development of antibiotics with a different mechanism of action is seriously required. Here, we identified an allosteric inhibitory site buried inside eukaryotic mitochondrial heme-copper oxidases (HCOs), the essential respiratory enzymes for life. The steric conformation around the binding pocket of HCOs is highly conserved among bacteria and eukaryotes, yet the latter has an extra helix. This structural difference in the conserved allostery enabled us to rationally identify bacterial HCO-specific inhibitors: an antibiotic compound against ceftriaxone-resistant Neisseria gonorrhoeae. Molecular dynamics combined with resonance Raman spectroscopy and stopped-flow spectroscopy revealed an allosteric obstruction in the substrate accessing channel as a mechanism of inhibition. Our approach opens fresh avenues in modulating protein functions and broadens our options to overcome AMR.
  • Yohko Yoshida, Ippei Shimizu, Atsuhiro Shimada, Keita Nakahara, Sachiko Yanagisawa, Minoru Kubo, Shinji Fukuda, Chiharu Ishii, Hiromitsu Yamamoto, Takamasa Ishikawa, Kuniyuki Kano, Junken Aoki, Goro Katsuumi, Masayoshi Suda, Kazuyuki Ozaki, Yutaka Yoshida, Shujiro Okuda, Shigeo Ohta, Shiki Okamoto, Yasuhiko Minokoshi, Kanako Oda, Toshikuni Sasaoka, Manabu Abe, Kenji Sakimura, Yoshiaki Kubota, Norihiko Yoshimura, Shingo Kajimura, Maria Zuriaga, Kenneth Walsh, Tomoyoshi Soga, Tohru Minamino
    Scientific Reports 12(1) 14883 2022年9月1日  査読有り
    Abstract Low body temperature predicts a poor outcome in patients with heart failure, but the underlying pathological mechanisms and implications are largely unknown. Brown adipose tissue (BAT) was initially characterised as a thermogenic organ, and recent studies have suggested it plays a crucial role in maintaining systemic metabolic health. While these reports suggest a potential link between BAT and heart failure, the potential role of BAT dysfunction in heart failure has not been investigated. Here, we demonstrate that alteration of BAT function contributes to development of heart failure through disorientation in choline metabolism. Thoracic aortic constriction (TAC) or myocardial infarction (MI) reduced the thermogenic capacity of BAT in mice, leading to significant reduction of body temperature with cold exposure. BAT became hypoxic with TAC or MI, and hypoxic stress induced apoptosis of brown adipocytes. Enhancement of BAT function improved thermogenesis and cardiac function in TAC mice. Conversely, systolic function was impaired in a mouse model of genetic BAT dysfunction, in association with a low survival rate after TAC. Metabolomic analysis showed that reduced BAT thermogenesis was associated with elevation of plasma trimethylamine N-oxide (TMAO) levels. Administration of TMAO to mice led to significant reduction of phosphocreatine and ATP levels in cardiac tissue via suppression of mitochondrial complex IV activity. Genetic or pharmacological inhibition of flavin-containing monooxygenase reduced the plasma TMAO level in mice, and improved cardiac dysfunction in animals with left ventricular pressure overload. In patients with dilated cardiomyopathy, body temperature was low along with elevation of plasma choline and TMAO levels. These results suggest that maintenance of BAT homeostasis and reducing TMAO production could be potential next-generation therapies for heart failure.
  • Shigenori Nagatomo, Mitsuo Shoji, Takuto Terada, Kiyoharu Nakatani, Yasuteru Shigeta, Shun Hirota, Sachiko Yanagisawa, Minoru Kubo, Teizo Kitagawa, Masako Nagai, Mio Ohki, Sam-Yong Park, Naoya Shibayama
    Biophysical Journal 121(14) 2767-2780 2022年7月19日  査読有り
  • Ranjana Gupta, Xiao-Xi Li, Youngseob Lee, Mi Sook Seo, Yong-Min Lee, Sachiko Yanagisawa, Minoru Kubo, Ritimukta Sarangi, Kyung-Bin Cho, Shunichi Fukuzumi, Wonwoo Nam
    Chemical Science 13(19) 5707-5717 2022年4月12日  査読有り
    Disproportionation of Cpd II models depends on the electron-richness of the porphyrin ligand; Cpd II with an electron-deficient ligand is difficult to disproportionate, whereas Cpd II with an electron-rich ligand readily disproportionates to form Cpd I as a true oxidant.
  • Toshiaki Hosaka, Takashi Nomura, Minoru Kubo, Takanori Nakane, Luo Fangjia, Shun-ichi Sekine, Takuhiro Ito, Kazutaka Murayama, Kentaro Ihara, Haruhiko Ehara, Kazuhiro Kashiwagi, Kazushige Katsura, Ryogo Akasaka, Tamao Hisano, Tomoyuki Tanaka, Rie Tanaka, Toshi Arima, Ayumi Yamashita, Michihiro Sugahara, Hisashi Naitow, Yoshinori Matsuura, Susumu Yoshizawa, Kensuke Tono, Shigeki Owada, Osamu Nureki, Tomomi Kimura-Someya, So Iwata, Eriko Nango, Mikako Shirouzu
    Proceedings of the National Academy of Sciences 119(9) e2117433119 2022年2月23日  査読有り
    Significance Light-driven chloride pumps have been identified in various species, including archaea and marine flavobacteria. The function of ion transportation controllable by light is utilized for optogenetics tools in neuroscience. Chloride pumps differ among species, in terms of amino acid homology and structural similarity. Our time-resolved crystallographic studies using X-ray free electron lasers reveal the molecular mechanism of halide ion transfer in a light-driven chloride pump from a marine flavobacterium. Our data indicate a common mechanism in chloride pumping rhodopsins, as compared to previous low-temperature trapping studies of chloride pumps. These findings are significant not only for further improvements of optogenetic tools but also for a general understanding of the ion pumping mechanisms of microbial rhodopsins.
  • Yuji Mikata, Yuri Aono, Chihiro Yamamoto, Hiromi Nakayama, Arimasa Matsumoto, Fukue Kotegawa, Masafumi Harada, Hajime Katano, Yoshio Kobayashi, Sachiko Yanagisawa, Minoru Kubo, Atsushi Kajiwara, Masahito Kodera
    Inorganic Chemistry 61(2) 786-790 2021年11月25日  査読有り
  • Tomoya Shinke, Mayu Itoh, Takuma Wada, Yuma Morimoto, Sachiko Yanagisawa, Hideki Sugimoto, Minoru Kubo, Shinobu Itoh
    Chemistry – A European Journal 27(59) 14730-14737 2021年9月27日  査読有り
  • Takashi Nomura, Tetsunari Kimura, Yusuke Kanematsu, Daichi Yamada, Keitaro Yamashita, Kunio Hirata, Go Ueno, Hironori Murakami, Tamao Hisano, Raika Yamagiwa, Hanae Takeda, Chai Gopalasingam, Ryota Kousaka, Sachiko Yanagisawa, Osami Shoji, Takashi Kumasaka, Masaki Yamamoto, Yu Takano, Hiroshi Sugimoto, Takehiko Tosha, Minoru Kubo, Yoshitsugu Shiro
    Proceedings of the National Academy of Sciences 118(21) e2101481118 2021年5月25日  査読有り最終著者責任著者
    Nitric oxide (NO) reductase from the fungus <italic>Fusarium oxysporum</italic> is a P450-type enzyme (P450nor) that catalyzes the reduction of NO to nitrous oxide (N2O) in the global nitrogen cycle. In this enzymatic reaction, the heme-bound NO is activated by the direct hydride transfer from NADH to generate a short-lived intermediate (<italic><underline>I</underline></italic>), a key state to promote N–N bond formation and N–O bond cleavage. This study applied time-resolved (TR) techniques in conjunction with photolabile-caged NO to gain direct experimental results for the characterization of the coordination and electronic structures of <italic><underline>I</underline></italic>. TR freeze-trap crystallography using an X-ray free electron laser (XFEL) reveals highly bent Fe–NO coordination in <italic><underline>I</underline></italic>, with an elongated Fe–NO bond length (Fe–NO = 1.91 Å, Fe–N–O = 138°) in the absence of NAD+. TR-infrared (IR) spectroscopy detects the formation of <italic><underline>I</underline></italic> with an N–O stretching frequency of 1,290 cm−1 upon hydride transfer from NADH to the Fe3+–NO enzyme via the dissociation of NAD+ from a transient state, with an N–O stretching of 1,330 cm−1 and a lifetime of ca. 16 ms. Quantum mechanics/molecular mechanics calculations, based on these crystallographic and IR spectroscopic results, demonstrate that the electronic structure of <italic><underline>I</underline></italic> is characterized by a singly protonated Fe3+–NHO•− radical. The current findings provide conclusive evidence for the N2O generation mechanism via a radical–radical coupling of the heme nitroxyl complex with the second NO molecule.
  • Hongjie Li, Yoshiki Nakajima, Takashi Nomura, Michihiro Sugahara, Shinichiro Yonekura, Siu Kit Chan, Takanori Nakane, Takahiro Yamane, Yasufumi Umena, Mamoru Suzuki, Tetsuya Masuda, Taiki Motomura, Hisashi Naitow, Yoshinori Matsuura, Tetsunari Kimura, Kensuke Tono, Shigeki Owada, Yasumasa Joti, Rie Tanaka, Eriko Nango, Fusamichi Akita, Minoru Kubo, So Iwata, Jian-Ren Shen, Michihiro Suga
    IUCrJ 8(3) 431-443 2021年5月1日  査読有り
    Photosystem II (PSII) catalyzes light-induced water oxidation through an S<italic> i </italic>-state cycle, leading to the generation of di-oxygen, protons and electrons. Pump–probe time-resolved serial femtosecond crystallography (TR-SFX) has been used to capture structural dynamics of light-sensitive proteins. In this approach, it is crucial to avoid light contamination in the samples when analyzing a particular reaction intermediate. Here, a method for determining a condition that avoids light contamination of the PSII microcrystals while minimizing sample consumption in TR-SFX is described. By swapping the pump and probe pulses with a very short delay between them, the structural changes that occur during the S1-to-S2 transition were examined and a boundary of the excitation region was accurately determined. With the sample flow rate and concomitant illumination conditions determined, the S2-state structure of PSII could be analyzed at room temperature, revealing the structural changes that occur during the S1-to-S2 transition at ambient temperature. Though the structure of the manganese cluster was similar to previous studies, the behaviors of the water molecules in the two channels (O1 and O4 channels) were found to be different. By comparing with the previous studies performed at low temperature or with a different delay time, the possible channels for water inlet and structural changes important for the water-splitting reaction were revealed.
  • Kazumasa Oda, Takashi Nomura, Takanori Nakane, Keitaro Yamashita, Keiichi Inoue, Shota Ito, Johannes Vierock, Kunio Hirata, Andrés D Maturana, Kota Katayama, Tatsuya Ikuta, Itsuki Ishigami, Tamaki Izume, Rie Umeda, Ryuun Eguma, Satomi Oishi, Go Kasuya, Takafumi Kato, Tsukasa Kusakizako, Wataru Shihoya, Hiroto Shimada, Tomoyuki Takatsuji, Mizuki Takemoto, Reiya Taniguchi, Atsuhiro Tomita, Ryoki Nakamura, Masahiro Fukuda, Hirotake Miyauchi, Yongchan Lee, Eriko Nango, Rie Tanaka, Tomoyuki Tanaka, Michihiro Sugahara, Tetsunari Kimura, Tatsuro Shimamura, Takaaki Fujiwara, Yasuaki Yamanaka, Shigeki Owada, Yasumasa Joti, Kensuke Tono, Ryuichiro Ishitani, Shigehiko Hayashi, Hideki Kandori, Peter Hegemann, So Iwata, Minoru Kubo, Tomohiro Nishizawa, Osamu Nureki
    eLife 10 e62389 2021年3月23日  査読有り責任著者
    Channelrhodopsins (ChRs) are microbial light-gated ion channels utilized in optogenetics to control neural activity with light . Light absorption causes retinal chromophore isomerization and subsequent protein conformational changes visualized as optically distinguished intermediates, coupled with channel opening and closing. However, the detailed molecular events underlying channel gating remain unknown. We performed time-resolved serial femtosecond crystallographic analyses of ChR by using an X-ray free electron laser, which revealed conformational changes following photoactivation. The isomerized retinal adopts a twisted conformation and shifts toward the putative internal proton donor residues, consequently inducing an outward shift of TM3, as well as a local deformation in TM7. These early conformational changes in the pore-forming helices should be the triggers that lead to opening of the ion conducting pore.
  • Shan-Shan Xue, Xiao-Xi Li, Yong-Min Lee, Mi Sook Seo, Yujeong Kim, Sachiko Yanagisawa, Minoru Kubo, Young-Kyo Jeon, Won-Suk Kim, Ritimukta Sarangi, Sun Hee Kim, Shunichi Fukuzumi, Wonwoo Nam
    Journal of the American Chemical Society 2020年8月11日  査読有り
  • Nobutaka Fujieda, Kyohei Umakoshi, Yuta Ochi, Yosuke Nishikawa, Sachiko Yanagisawa, Minoru Kubo, Genji Kurisu, Shinobu Itoh
    Angewandte Chemie International Edition 59(32) 13385-13390 2020年8月3日  査読有り
  • Hanae Takeda, Tetsunari Kimura, Takashi Nomura, Masaki Horitani, Azusa Yokota, Akiko Matsubayashi, Shoko Ishii, Yoshitsugu Shiro, Minoru Kubo, Takehiko Tosha
    Bulletin of the Chemical Society of Japan 93(7) 825-833 2020年7月15日  査読有り責任著者
  • Yoshiaki Kokubo, Yuko Wasada-Tsutsui, Shunsuke Yomura, Sachiko Yanagisawa, Minoru Kubo, Shinichi Kugimiya, Yuji Kajita, Tomohiro Ozawa, Hideki Masuda
    European Journal of Inorganic Chemistry 2020(15-16) 1456-1464 2020年4月30日  査読有り
  • Alexander M. Wolff, Iris D. Young, Raymond G. Sierra, Aaron S. Brewster, Michael W. Martynowycz, Eriko Nango, Michihiro Sugahara, Takanori Nakane, Kazutaka Ito, Andrew Aquila, Asmit Bhowmick, Justin T. Biel, Sergio Carbajo, Aina E. Cohen, Saul Cortez, Ana Gonzalez, Tomoya Hino, Dohyun Im, Jake D. Koralek, Minoru Kubo, Tomas S. Lazarou, Takashi Nomura, Shigeki Owada, Avi J. Samelson, Tomoyuki Tanaka, Rie Tanaka, Erin M. Thompson, Henry van den Bedem, Rahel A. Woldeyes, Fumiaki Yumoto, Wei Zhao, Kensuke Tono, Sebastien Boutet, So Iwata, Tamir Gonen, Nicholas K. Sauter, James S. Fraser, Michael C. Thompson
    IUCrJ 7(2) 306-323 2020年3月1日  査読有り
    Innovative new crystallographic methods are facilitating structural studies from ever smaller crystals of biological macromolecules. In particular, serial X-ray crystallography and microcrystal electron diffraction (MicroED) have emerged as useful methods for obtaining structural information from crystals on the nanometre to micrometre scale. Despite the utility of these methods, their implementation can often be difficult, as they present many challenges that are not encountered in traditional macromolecular crystallography experiments. Here, XFEL serial crystallography experiments and MicroED experiments using batch-grown microcrystals of the enzyme cyclophilin A are described. The results provide a roadmap for researchers hoping to design macromolecular microcrystallography experiments, and they highlight the strengths and weaknesses of the two methods. Specifically, we focus on how the different physical conditions imposed by the sample-preparation and delivery methods required for each type of experiment affect the crystal structure of the enzyme.
  • Michihiro Suga, Fusamichi Akita, Keitaro Yamashita, Yoshiki Nakajima, Go Ueno, Hongjie Li, Takahiro Yamane, Kunio Hirata, Yasufumi Umena, Shinichiro Yonekura, Long-Jiang Yu, Hironori Murakami, Takashi Nomura, Tetsunari Kimura, Minoru Kubo, Seiki Baba, Takashi Kumasaka, Kensuke Tono, Makina Yabashi, Hiroshi Isobe, Kizashi Yamaguchi, Masaki Yamamoto, Hideo Ago, Jian-Ren Shen
    Science 366(6463) 334-338 2019年10月18日  査読有り
  • Hiroaki Kotani, Hinatsu Shimomura, Momoka Horimoto, Tomoya Ishizuka, Yoshihito Shiota, Kazunari Yoshizawa, Sachiko Yanagisawa, Yuka Kawahara-Nakagawa, Minoru Kubo, Takahiko Kojima
    Dalton Transactions 48(35) 13154-13161 2019年7月16日  査読有り
  • Kadoya, Y, Fukui, K, Hata, M, Miyano, R, Hitomi, Y, Yanagisawa, S, Kubo, M, Kodera, M
    Inorg. Chem. 58(21) in press-14298 2019年  査読有り
  • Ryo Komiya, Tetsunari Kimura, Takashi Nomura, Minoru Kubo, Jiwang Yan
    Journal of Advanced Mechanical Design, Systems and Manufacturing 12(1) JAMDSM0021 2018年  査読有り
  • Kijima, J, Shibuya, Y, Katayama, K, Itoh, T, Iwase, H, Fukushima, Y, Kubo, M, Yamaguchi, A
    J. Phys. Chem. C 122(27) 15567-15574 2018年  査読有り
  • Takehiko Tosha, Takashi Nomura, Takuma Nishida, Naoya Saeki, Kouta Okubayashi, Raika Yamagiwa, Michihiro Sugahara, Takanori Nakane, Keitaro Yamashita, Kunio Hirata, Go Ueno, Tetsunari Kimura, Tamao Hisano, Kazumasa Muramoto, Hitomi Sawai, Hanae Takeda, Eiichi Mizohata, Ayumi Yamashita, Yusuke Kanematsu, Yu Takano, Eriko Nango, Rie Tanaka, Osamu Nureki, Osami Shoji, Yuka Ikemoto, Hironori Murakami, Shigeki Owada, Kensuke Tono, Makina Yabashi, Masaki Yamamoto, Hideo Ago, So Iwata, Hiroshi Sugimoto, Yoshitsugu Shiro, Minoru Kubo
    NATURE COMMUNICATIONS 8 1585 2017年11月  査読有り最終著者責任著者
  • Minoru Kubo, Eriko Nango, Kensuke Tono, Tetsunari Kimura, Shigeki Owada, Changyong Song, Fumitaka Mafune, Ken Miyajima, Yoshihiro Takeda, Jun-ya Kohno, Naoya Miyauchi, Takanori Nakane, Tomoyuki Tanaka, Takashi Nomura, Jan Davidsson, Rie Tanaka, Michio Murata, Takashi Kameshima, Takaki Hatsui, Yasumasa Joti, Richard Neutze, Makina Yabashi, So Iwata
    JOURNAL OF SYNCHROTRON RADIATION 24 1086-1091 2017年9月  査読有り筆頭著者
  • Atsuhiro Shimada, Minoru Kubo, Seiki Baba, Keitaro Yamashita, Kunio Hirata, Go Ueno, Takashi Nomura, Tetsunari Kimura, Kyoko Shinzawa-Itoh, Junpei Baba, Keita Hatano, Yuki Eto, Akari Miyamoto, Hironori Murakami, Takashi Kumasaka, Shigeki Owada, Kensuke Tono, Makina Yabashi, Yoshihiro Yamaguchi, Sachiko Yanagisawa, Miyuki Sakaguchi, Takashi Ogura, Ryo Komiya, Jiwang Yan, Eiki Yamashita, Masaki Yamamoto, Hideo Ago, Shinya Yoshikawa, Tomitake Tsukihara
    SCIENCE ADVANCES 3(7) e1603042 2017年7月  査読有り
  • Michihiro Suga, Fusamichi Akita, Michihiro Sugahara, Minoru Kubo, Yoshiki Nakajima, Takanori Nakane, Keitaro Yamashita, Yasufumi Umena, Makoto Nakabayashi, Takahiro Yamane, Takamitsu Nakano, Mamoru Suzuki, Tetsuya Masuda, Shigeyuki Inoue, Tetsunari Kimura, Takashi Nomura, Shinichiro Yonekura, Long-Jiang Yu, Tomohiro Sakamoto, Taiki Motomura, Jing-Hua Chen, Yuki Kato, Takumi Noguchi, Kensuke Tono, Yasumasa Joti, Takashi Kameshima, Takaki Hatsui, Eriko Nango, Rie Tanaka, Hisashi Naitow, Yoshinori Matsuura, Ayumi Yamashita, Masaki Yamamoto, Osamu Nureki, Makina Yabashi, Tetsuya Ishikawa, So Iwata, Jian-Ren Shen
    NATURE 543(7643) 131-135 2017年3月  査読有り
  • E. Nango, A. Royant, M. Kubo, T. Nakane, C. Wickstrand, T. Kimura, T. Tanaka, K. Tono, C. Song, R. Tanaka, T. Arima, A. Yamashita, J. Kobayashi, T. Hosaka, E. Mizohata, P. Nogly, M. Sugahara, D. Nam, T. Nomura, T. Shimamura, D. Im, T. Fujiwara, Y. Yamanaka, B. Jeon, T. Nishizawa, K. Oda, M. Fukuda, R. Andersson, P. Båth, R. Dods, J. Davidsson, S. Matsuoka, S. Kawatake, M. Murata, O. Nureki, S. Owada, T. Kameshima, T. Hatsui, Y. Joti, G. Schertler, M. Yabashi, A.-N. Bondar, J. Standfuss, R. Neutze, S. Iwata
    Science 354(6319) 1552-1557 2016年12月  査読有り
  • Eriko Nango, Antoine Royant, Minoru Kubo, Takanori Nakane, Cecilia Wickstrand, Tetsunari Kimura, Tomoyuki Tanaka, Kensuke Tono, Changyong Song, Rie Tanaka, Toshi Arima, Ayumi Yamashita, Jun Kobayashi, Toshiaki Hosaka, Eiichi Mizohata, Przemyslaw Nogly, Michihiro Sugahara, Daewoong Nam, Takashi Nomura, Tatsuro Shimamura, Dohyun Im, Takaaki Fujiwara, Yasuaki Yamanaka, Byeonghyun Jeon, Tomohiro Nishizawa, Kazumasa Oda, Masahiro Fukuda, Rebecka Andersson, Petra Bath, Robert Dods, Jan Davidsson, Shigeru Matsuoka, Satoshi Kawatake, Michio Murata, Osamu Nureki, Shigeki Owada, Takashi Kameshima, Takaki Hatsui, Yasumasa Joti, Gebhard Schertler, Makina Yabashi, Ana-Nicoleta Bondar, Jorg Standfuss, Richard Neutze, So Iwata
    SCIENCE 354(6319) 1552-1557 2016年12月  査読有り
  • Akihiro Otomo, Haruto Ishikawa, Misao Mizuno, Tetsunari Kimura, Minoru Kubo, Yoshitsugu Shiro, Shigetoshi Aono, Yasuhisa Mizutani
    JOURNAL OF PHYSICAL CHEMISTRY B 120(32) 7836-7843 2016年8月  査読有り
  • Przemyslaw Nogly, Valerie Panneels, Garrett Nelson, Cornelius Gati, Tetsunari Kimura, Christopher Milne, Despina Milathianaki, Minoru Kubo, Wenting Wu, Chelsie Conrad, Jesse Coe, Richard Bean, Yun Zhao, Petra Bath, Robert Dods, Rajiv Harimoorthy, Kenneth R. Beyerlein, Jan Rheinberger, Daniel James, Daniel DePonte, Chufeng Li, Leonardo Sala, Garth J. Williams, Mark S. Hunter, Jason E. Koglin, Peter Berntsen, Eriko Nango, So Iwata, Henry N. Chapman, Petra Fromme, Matthias Frank, Rafael Abela, Sebastien Boutet, Anton Barty, Thomas A. White, Uwe Weierstall, John Spence, Richard Neutze, Gebhard Schertler, Jorg Standfuss
    NATURE COMMUNICATIONS 7 12314 2016年8月  査読有り
  • Miyuki Sakaguchi, Tetsunari Kimura, Takuma Nishida, Takehiko Tosha, Hiroshi Sugimoto, Yoshihiro Yamaguchi, Sachiko Yanagisawa, Go Ueno, Hironori Murakami, Hideo Ago, Masaki Yamamoto, Takashi Ogura, Yoshitsugu Shiro, Minoru Kubo
    JOURNAL OF SYNCHROTRON RADIATION 23 334-338 2016年1月  査読有り最終著者責任著者
  • Minoru Kubo, Satoru Nakashima, Satoru Yamaguchi, Takashi Ogura, Masao Mochizuki, Jiyoung Kang, Masaru Tateno, Kyoko Shinzawa-Itoh, Koji Kato, Shinya Yoshikawa
    JOURNAL OF BIOLOGICAL CHEMISTRY 288(42) 30259-30269 2013年10月  査読有り筆頭著者
  • Tetsuro Tano, Yuri Okubo, Atsushi Kunishita, Minoru Kubo, Hideki Sugimoto, Nobutaka Fujieda, Takashi Ogura, Shinobu Itoh
    Inorganic Chemistry 52(18) 10431-10437 2013年9月16日  査読有り
  • Hideki Sugimoto, Kohei Hatakeda, Kazuo Toyota, Susumu Tatemoto, Minoru Kubo, Takashi Ogura, Shinobu Itoh
    DALTON TRANSACTIONS 42(9) 3059-3070 2013年  査読有り
  • Hideki Sugimoto, Susumu Tatemoto, Kazuo Toyota, Kenji Ashikari, Minoru Kubo, Takashi Ogura, Shinobu Itoh
    CHEMICAL COMMUNICATIONS 49(39) 4358-4360 2013年  査読有り
  • Yuki Kobayashi, Kei Ohkubo, Takashi Nomura, Minoru Kubo, Nobutaka Fujieda, Hideki Sugimoto, Shunichi Fukuzumi, Kei Goto, Takashi Ogura, Shinobu Itoh
    EUROPEAN JOURNAL OF INORGANIC CHEMISTRY 29(29) 4574-4578 2012年10月  査読有り
  • Atsutoshi Yokoyama, Jung Eun Han, Jaeheung Cho, Minoru Kubo, Takashi Ogura, Maxime A. Siegler, Kenneth D. Karlin, Wonwoo Nam
    JOURNAL OF THE AMERICAN CHEMICAL SOCIETY 134(37) 15269-15272 2012年9月  査読有り
  • Minoru Kubo, Orio Okuyama, Teizo Kitagawa, Yasuteru Shigeta
    CHEMISTRY LETTERS 41(9) 860-862 2012年9月  査読有り筆頭著者責任著者
  • Samir F. El-Mashtoly, Minoru Kubo, Yuzong Gu, Hitomi Sawai, Satoru Nakashima, Takashi Ogura, Shigetoshi Aono, Teizo Kitagawa
    JOURNAL OF BIOLOGICAL CHEMISTRY 287(24) 19973-19984 2012年6月  査読有り
  • Samir F. El-Mashtoly, Minoru Kubo, Satoru Nakashima, Toru Shimizu, Teizo Kitagawa
    JOURNAL OF PHYSICAL CHEMISTRY LETTERS 2(17) 2212-2217 2011年9月  査読有り

MISC

 14
  • Eiichi Mizohata, Eriko Nango, Takehiko Tosha, So Iwata, Minoru Kubo
    Current Protocols 5(9) 2025年9月23日  査読有り最終著者責任著者
    Abstract Since the birth of biochemistry, researchers have investigated the structure–function relationship of a wide variety of proteins. However, until recently, when X‐ray free‐electron lasers (XFELs) became available, it was not possible to visualize the motion of proteins from moment to moment with excellent temporal and spatial resolution. Here, we introduce practical methods to visualize protein motions at room temperature using serial femtosecond crystallography (SFX) using XFELs. With the development of this technology, it will be possible to visualize the entire reaction mechanism of many proteins in the future. We first outline a streamlined microcrystallization workflow for hen egg‐white lysozyme, enabling rapid detector calibration and data‐collection optimization. Next, we present a rotational seeding approach refined on copper‐containing nitrite reductase that yields homogeneous microcrystals suitable for high‐resolution SFX and readily adaptable to other challenging targets. Finally, we describe a time‐resolved strategy combining microcrystals of fungal nitric‐oxide reductase with photolabile caged substrates and synchronized UV triggering, capturing catalytic intermediates on the millisecond timescale. Together, these procedures enable investigators to progress from preparing samples to capturing dynamic structural snapshots. © 2025 The Author(s). Current Protocols published by Wiley Periodicals LLC. Basic Protocol 1: Microcrystallization of lysozyme Basic Protocol 2: Microcrystallization of copper‐containing nitrite reductase Basic Protocol 3: Time‐resolved serial femtosecond crystallography
  • 片山哲郎, 木村哲就, 久保稔
    生体の科学 75 225-230 2024年6月15日  
  • Eriko Nango, Minoru Kubo, Kensuke Tono, So Iwata
    Applied Sciences 9(24) 5505-5505 2019年12月14日  査読有り責任著者
    Structural information on protein dynamics is a critical factor in fully understanding the protein functions. Pump-probe time-resolved serial femtosecond crystallography (TR-SFX) is a recently established technique for visualizing the structural changes or reactions in proteins that are at work with high spatial and temporal resolution. In the pump-probe method, protein microcrystals are continuously delivered from an injector and exposed to an X-ray free-electron laser (XFEL) pulse after a trigger to initiate a reaction, such as light, chemicals, temperature, and electric field, which affords the structural snapshots of intermediates that occur in the protein. We are in the process of developing the device and techniques for pump-probe TR-SFX while using XFEL produced at SPring-8 Angstrom Compact Free-Electron Laser (SACLA). In this paper, we described our current development details and data collection strategies for the optical pump X-ray probe TR-SFX experiment at SACLA and then reported the techniques of in crystallo TR spectroscopy, which is useful in clarifying the nature of reaction that takes place in crystals in advance.
  • 當舎武彦, 久保稔
    生物物理 59(4) 205-207 2019年  査読有り

共同研究・競争的資金等の研究課題

 24