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ホーム  > 病態細胞生物学分野  > 研究業績

研究業績

2020年

Kato Y, Arakawa S, Terasawa K, Inokuchi JI, Iwata T, Shimizu S, Watabe T. The ceramide analogue N-(1-hydroxy-3-morpholino-1-phenylpropan-2-yl)decanamide induces large lipid droplet accumulation and highlights the effect of LAMP-2 deficiency on lipid droplet degradation. Bioorg.

Kato H, Okabe K, Miyake M, Hattori K, Fukaya T, Tanimoto K, Beini S, Mizuguchi M, Torii S, Arakawa S, Ono M, Saito Y, Sugiyama T, Funatsu T, Sato K, Shimizu S, Oyadomari S, Ichijo H, Kadowaki H, Nishitoh H. ER-resident sensor PERK is essential for mitochondrial thermogenesis in brown adipose tissue. Life Science Alliance.

Torii S, Yamaguchi H, Nakanishi A, Arakawa S, Honda S, Moriwaki K, Nakano H, Shimizu S. Identification of a phosphorylation site on Ulk1 required for genotoxic stress-induced alternative autophagy. Nature Commun.

Yasueda A, Kayama H, Murohashi M, Nishimura J, Wakame K, Komatsu K, Ogino T, Miyoshi N, Takahashi H, Uemura M, Matsuda C, Kitagawa T, Takeda K, Ito T, Doki Y, Eguchi H, Shimizu S, Mizushima T. Sanguisorba officinalis L. derived from herbal medicine prevents intestinal inflammation by inducing autophagy in macrophages. Scientific Reports. 2020,in press.

Torii S, Honda S, Murohashi M, Yamaguchi H, Shimizu S. Autophagy Involvement in Oncogenesis. Cancer Science 2020 in press.

2019年

Organelle zones in mitochondria. S.Shimizu. J. Biochem. 165, 101-107, 2019

Beclin 1 regulates recycling endosome and is required for skin development in mice. S. Noguchi, S.Honda, T. Saitoh, H. Matsumura, E. Nishimura, S. Akira, S.Shimizu. Communications Biology 2, Article No. 37, 2019.

Role of cyclooxygenase-2/prostaglandin E2/prostaglandin E receptor 4 signaling in cardiac reprogramming. N. Muraoka, K. Nara, F. Tamura, H. Kojima, H. Yamakawa, T. Sadahiro, K.Miyamoto, M. Isomi, S. Haginiwa, H. Tani, S. Kurotsu, R. Osakabe, S. Torii, S.Shimizu, H.Okano, Y. Sugimoto, K. Fukuda, M. Ieda. Nature Commun. 10, Article No. 674, 2019.

Prediction of intracellular targets of a small compound by analyzing peptides presented on MHC class I. Y. Sugimoto, M. Murohashi, S. Arakawa, S. Honda, S.Shimizu. BBRC 508, 480-486, 2019

2018年

Association between autophagy and neurodegenerative diseases. N. Fujikake, M. Shin, S.Shimizu. Frontiers in Neuroscience. 12, 255, 2018

Biological Roles of Alternative Autophagy. S.Shimizu. Mol Cells.41, 50-54, 2018

Dram1 regulates DNA damage-induced alternative autophagy. M. Nagata, S. Arakawa, H. Yamaguchi, S. Torii, H. Endo, M. Tsujioka, S. Honda, Y. Nishida, A. Konishi, S.Shimizu. Cell Stress 2, 55-65, 2018.

Fluorescent small molecules for monitoring autophagic flux. H. Iwashita, H. Tajima Sakurai, N. Nagahora, M. Ishiyama, K. Shioji, K. Sasamoto, K. Okuma, S.Shimizu, Y. Ueno. FEBS let. 592, 559-567, 2018.

The CCR4-NOT deadenylase complex controls Atg7-dependent cell death and heart function. T. Yamaguchi, T. Suzuki, T. Sato, A. Takahashi, H. Watanabe, A. Kadowaki, M. Natsui, H. Inagaki, S. Arakawa, S.Nakaoka, Y. Koizumi, S. Seki, S. Adachi, A. Fukao, T. Fujiwara, T. Natsume, A. Kimura, M. Komatsu, S.Shimizu, H. Ito, Y. Suzuki, J. M. Penninger, T. Yamamoto, Y. Imai, K. Kuba. Scientific Signalling Scienti11(516), pii: eaan3638, 2018.

2017年

Molecular mechanisms and physiological roles of Atg5/Atg7-independent alternative autophagy S. Arakawa, S. Honda, H. Yamaguchi, S.Shimizu. Proceedings of the Japan Academy, Series B, 93 (6), 378-385, 2017

Hyperoxidation of ether-linked phospholipids accelerates neutrophil extracellular trap formation. S.Yotsumoto, Y. Muroi, T. Chiba, R. Ohmura, M. Yoneyama, M. Magarisawa, K. Dodo, N. Terayama, M. Sodeoka, R. Aoyagi, M. Arita, S. Arakawa, S.Shimizu, M. Tanaka. ScientificReports 7, Article number: 16026, 2017

Rhodium-catalyzed odorless synthesis of diaryl sulfides from borylarenes and S-aryl thiosulfonates. K. Kanemoto, Y. Sugimura, S.Shimizu, S. Yoshida, T. Hosoya. Chem. Commun. 53, 10640-10643, 2017.

Live Cell Imaging of Mitochondrial Autophagy with a Novel Fluorescent Small Molecule. H.Iwashita, S. Torii, N.Nagahora, M. Ishiyama, K. Shioji, K. Sasamoto, S.Shimizu, K. Okuma. ACS Chemical Biology 12, 2546-2551 2017

Autophagy controls centrosome number. S. Honda, S.Shimizu. OncoTargetCommentary 8, 14277-14278, 2017

Intrinsic autophagy is required for the maintenance of intestinal stem cells and for irradiation-induced intestinal regeneration. J. Asano, T. Sato, S. Ichinose, M. Kajita, N. Onai, S.Shimizu, T. Ohteki. Cell reports 20 (5), 1017-1254. 2017

Role of Atg5-dependent cell death in the embryonic development of Bax/Bak double-knockout mice. S. Arakawa, M. Tsujioka, T. Yoshida, H. Tajima-Sakurai, Y. Nishida, Y. Matsuoka, I. Yoshino, Y. Tsujimoto, S.Shimizu. Cell Death Differ 24 (9), 1598-1608. 2017

Mitochondrial damage elicits a TCDD-inducible poly(ADP-ribose) polymerase-mediated antiviral response. T. Kozaki, J. Komano, D. Kanbayashi, M. Takahama, T. Misawa, T. Satoh, O. Takeuchi, T. Kawai, S.Shimizu, Y. Matsuura, S. Akira, T. Saitoh. PNAS114 (10), 2681-2686. 2017

2016年

Autophagy controls centrosome number by degrading Cep63. Y. Watanabe, S. Honda, A. Konishi, S. Arakawa, M. Murohashi, H. Yamaguchi, S. Torii, M. Tanabe, S. Tanaka, E. Warabi, S.Shimizu. Nature Commun 7:13508, 2016

Identification of PPM1D as an essential Ulk1 phosphatase for genotoxic stress-induced autophagy. S. Torii, T. Yoshida, S. Arakawa, S. Honda, A. Nakanishi, S.Shimizu. EMBO R 11:1552-1564, 2016

TRF2 Interacts with Core Histones to Stabilize Chromosome Ends. A. Konishi, T. Izumi, and S.Shimizu. J. Biol. Chem. 291(39):20798-810, 2016

In Situ Characterization of Bak Clusters Responsible for Cell Death Using Single Molecule Localization Microscopy. Y. Nasu, A. Benke, S. Arakawa, G. Yoshida, G. Kawamura, S. Manley, S.Shimizu, and T. Ozawa. Scientific Reports 6, Article number: 27505, 2016

Golgi membrane-associated degradation pathway in yeast and mammals. H. Yamaguchi, S. Arakawa, T. Kanaseki, T. Miyatsuka, Y. Fujitani, H. Watada, Y. Tsujimoto and S.Shimizu. EMBO J 35:1991-2007, 2016

Autophagy suppresses cell migration by degrading GEF-H1, a RhoA GEF.  
T. Yoshida, M. Tsujioka, S. Honda,M. Tanaka, S.Shimizu. OncoTarget 7:34420-9, 2016

Monitoring of Atg5-independent Mitophagy. S. Arakawa, S. Honda, S. Torii, M. Tsujioka, S.Shimizu. “Mitophagy” Volume in ‘Methods in Molecular Biology Springer Press, p1-8, 2016

Global analysis gene expression of the liver on metabolic syndrome mice model treated by low-molecular-weight lychee fruit polyphenol. H. Uchiyama, K. Uehara,
T. Nagashima, A. Nakata, K. Sato, Y. Mihara, K. Komatsu, J. Takanari, S.Shimizu,K. Wakame. Anticancer Research ,36(7):3705-13,2016

PPM1D is an essential Ulk1 phosphatase for genotoxic stress-induced autophagy.
S. Torii, T. Yoshida, S. Arakawa, S. Honda, A. Nakanishi, S.Shimizu. EMBO R 17(11):1552-1564

2015年

A mild and facile synthesis of aryl and alkenyl sulfides via copper-catalyzed deborylthiolation of organoborons with thiosulfonates. S. Yoshida, Y. Sugimura, Y. Hazama, Y. Nishiyama, T. Yano, S.Shimizu, T. Hosoya. Chemical Commun. 51:16613-16616, 2015

Identification of a novel compound that inhibits both mitochondria-mediated necrosis and apoptosis. S. Arakawa, I. Nakanomyo, Y. Kudo-Sakamoto, H. Akazawa, I. Komuro, S.Shimizu.Biochem. Biophys. Res. Commun. 467, 1006-1011, 2015

Direct Thioamination of Arynes via Reaction with Sulfilimines and Migratory N-Arylation. S. Yoshida, T. Yano, Y. Misawa, Y. Sugimura, K. Igawa, S.Shimizu, K. Tomooka, T. Hosoya.J. Am. Chem. Soc. 137:14071–14074, 2015

Autophagic Cell Death and Cancer Chemotherapeutics. S.Shimizu. “Innovative Medicine : Basic Research and Development” Springer Press, 219-226, 2015

2014年

Autophagic Cell Death and Cancer. S.Shimizu, T. Yoshida, M.Tsujioka, S. Arakawa. Int. J. Mol. Sci. 2014, 15(2), 3145-3153

Alternative macroautophagy and mitophagy. S.Shimizu, S.Honda, S.Arakawa, H.Yamaguchi, .Int J Biochem Cell Biol ;50:64-6. 2014

HMGB1 facilitates repair of mitochondrial DNA damage and extends the lifespan of mutant ataxin-1 knock-in mice. H. Ito, K. Fujita, K. Tagawa, X. Chen, H. Homma, T. Sasabe, J. Shimizu, S.Shimizu, T. Tamura, S. Muramatsu, H. Okazawa..EMBO Mol. Med. 7, 78-101, 2014

Ulk1-mediated Atg5-independent macroautophagy mediates elimination of mitochondria from embryonic reticulocytes. S. Honda, S. Arakawa, Y. Nishida,H. Yamaguchi, E. Ishii, S.Shimizu. Nature Commun. 5, Article number:4004, 2014

2013年

Inhibition of epithelial cell death by Bcl-2 improved chronic colitis in IL-10 KO mice. T.Mizushima, S.Arakawa, Y.Sanada,I.Yoshino, D.Miyazaki , H.Urushima, Y.Tsujimoto,T. Ito, S.Shimizu,. . Am J Pathol ;183(6) :1936-1944. 2013

Mammalian Autophagy Can Occur Through an Atg5/Atg7-Independent Pathway.
S.Shimizu, S. Arakawa, Y. Nishida, H. Yamaguchi, T. YoshidaAUTOPHAGY: Cancer, Other Pathologies, Inflammation, Immunity, and Infection.Vol. 2 (Edit MA Hayat) Academic Press, 49-59, 2013

2012年

p53 Inhibits Vascular Endothelial Growth Factor Expression in Solid Tumor. Y.Yoshioka, S.Shimizu, T.Ito, M.Taniguchi, M.Nomura, T.Nishida, Y.Sawa. J Surg Res. 174:291-297, 2012

Involvement of beclin 1 in engulfment of apoptotic cells. A.Konishi, S.Arakawa , Z.Yue , and S.Shimizu . J Biol Chem. 287(17): 13919-13929. 2012.

Shigella targets epithelial tricellular junctions and uses a noncanonical clathrin-dependent endocytic pathway to spread between cells. M.Fukumatsu , M.Ogawa , S.Arakawa , M.Suzuki, K.Nakayama , S.Shimizu, M.Kim , H.Mimuro, C.Sasakawa . Cell Host Microbe. 11(4):325-336. 2012

Hypertrophy and unconventional cell division of hepatocytes underlie liver regeneration. Y.Miyaoka, K.Ebato, H.Kato, S.Arakawa, S.Shimizu, A.Miyajima. Curr. Biol. 22:1166-75, 2012

Transformation of an antimicrobial peptide into a plasma membrane-permeable, mitochondria-targeted peptide via the substitution of lysine with arginine. I.Nakase, S.Okumura, S.Katayama, H.Hirose, S.Pujals, H.Yamaguchi, S.Arakawa, S.Shimizu, S.Futaki. Chemical Commun. 48:11097-99, 2012

Guidelines for the use and interpretation of assays for monitoring autophagy.
DJ. Klionsky, et al. (include S.Shimizu) .Autophagy 8, 445-544, 2012

2011年

Delayed-onset caspase-dependent massive hepatocyte apoptosis upon Fas activation in Bak/Bax-deficient mice. H. Hikita, T. Takehara, T. Kodama, S.Shimizu, M. Shigekawa, A.Hosui, T. Miyagi, T. Tatsumi, H. Ishida, Li W, T. Kanto, N.Hiramatsu, S. Shimizu, Y. Tsujimoto, N. Hayashi.Hepatology 54:240-251, 2011.

Spatial coupling of mTOR and autophagy augments secretory phenotypes.
M. Narita, A.R.J. Young, S.Arakawa, S.A. Samarajiwa, T. Nakashima, S. Yoshida, S.K. Hong, L.S. Berry, S. Reichelt, M. Ferreira, S. Tavare, K. Inoki, S.Shimizu, and M. Narita. Science 332: 966-970, 2011

Stress-activated protein kinase MKK7 regulates axon elongation in the developing cerebral cortex. T. Yamasaki, H. Kawasaki, S. Arakawa, K. Shimizu, S.Shimizu, O. Reiner, H. Okano, S. Nishina, N. Azuma, J.M. Penninger, T. Katada and H Nishina. Journal of Neuroscience. 31: 16872-16883, 2011

2010年

The role of cyclophilin D in learning and memory. A.Mouri, Y.Noda, S.Shimizu, Y.Tsujimoto, T,Nabeshima. Hippocampus20, 293-304, 2010

Involvement of JNK in the regulation of autophagic cell death. S.Shimizu, A.Konishi, Y.Nishida, T.Mizuta, H.Nishina, A.Yamamoto, Y.Tsujimoto. Oncogene 29, 2070-2082, 2010

xCT deficiency accelerates chemically induced tumorigenesis. A.Nabeyama, A.Kurita, K.Asano, Y.Miyake, T.Yasuda, I.Miura, G.Nishital, S.Arakawa, S.Shimizu, S.Wakame, H.Yoshida, M.Tanaka. Proc. Natl. Acad. Ssi. USA 107, 6436-6441, 2010

Cyclophilin D-dependent mitochondrial permeability transition is not involved in neurodegeneration in mnd2 mice. K.Ideguchi, S.Shimizu, M.Okumura, Y.Tsujimoto.Biochem. Biophys. Res. Commun. 393, 264-267, 2010.

Preparation of connexin43-integrated giant Liposomes by a baculovirus expression-liposome fusion method. K.Kamiya, K.Tsumoto, S.Arakawa, S.Shimizu, I.Morita, T.Yoshimura, K.Akiyoshi. Biotechnol. Bioeng. 107, 836-843, 2010

Neurodegeneration in mnd2 mutant mice is not prevented by parkin transgene. T.Yoshida, T.Mizuta, S.Shimizu. Biochem. Biophys. Res. Commun. 402, 676-679, 2010.

Autophagy takes an alternative pathway. S.Shimizu, S.Arakawa, Y.Nishida. Autophagy 6.2, 290-291, 2010

2009年

Discovery of Atg5/Atg7-independent alternative macroautophagy. Y. Nishida,S.Arakawa, K. Fujitani., H. Yamaguchi, T. Mizuta, T. Kanaseki, M. Komatsu,K. Otsu, Y. Tsujimoto, S.Shimizu. Nature 461, 654-658, 2009

Requirement of voltage-dependent anion channel 2 for pro-apoptotic activityof Bax. H. Yamagata, S.Shimizu, Y. Nishida, Y. Watanabe, W.J. Craigen, Y. Tsujimoto. Oncogene 28, 3563-3572, 2009

Autophagy mediates the mitotic-senescence transition. M. Narita, M. Ferreira,K. Kirschner, M. Sadaie, J.F. Darot, S. Tavaré, S. Arakawa, S.Shimizu, F.M. Watt, M. Narita. A.R. Young, Genes Dev. 23, 798-803, 2009

The targeting of cyclophilin D by RNAi as a novel cardioprotective therapy:evidence from two-photon imaging. M. Kato, M. Akao, M. Matsumoto-Ida, T.Makiyama, M. Iguchi, T. Takeda, S.Shimizu, T. Kita. Cardiovascular Research 83, 335-344, 2009

Paraquat toxicity induced by voltage-dependent anion channel 1 acts asan NADH-dependent oxidoreductase. H. Shimada, K. Hirai, E. Simamura, T.Hatta, H. Iwakiri, K. Mizuki, T. Hatta, T. Sawasaki, S. Matsunaga, Y. Endo, S.Shimizu. J. Biol. Chem. 284, 28642-28649, 2009

2008年

Crystal structure of human cyclophilin D in complex with its inhibitor,cyclosporin A at 0.96-A resolution. K.Kajitani , M.Fujihashi , Y.Kobayashi, S.Shimizu, Y.Tsujimoto, K.Miki. . Proteins. 2008 Mar;70 (4):1635-9.

E.Bcl-2 protects tubular epithelial cells from ischemia reperfusion injuryby inhibiting apoptosis. Suzuki C, Isaka Y, S.Shimizu, Tsujimoto Y, Takabatake Y, Ito T, Takahara S, Imai Cell Transplant. 2008;17(1-2):223-9.

Omi / HtrA2 is relevant to the selective vulnerability of striatal neuronsin Huntington's disease. R.Inagaki , k.Tagawa , Qi ML, Y.Enokido, H.Ito, T.Tamura, S.Shimizu, K.Oyanagi, N.Arai, I.Kanazawa, Wanker EE, H.Okazawa. Eur J Neurosci. 2008 Jul;28(1):30-40.

2007年

A Bax/Bak-independent mechanism of cytochrome c releasse. T.Mizuta, S.Shimizu, Y.Matsuoka, T.Nakagawa, Y.Tsujimoto . J. Biol. Chem. 2007 282, 16623-16630

2006年

Antiapoptotic function of 17AA(+)WT1 (Wilms' tumor gene) isoforms on theintrinsic apoptosis pathway. K.Ito, Y.Oji, N.Tatsumi, S.Shimizu, Y.Kanai, T.Nakazawa, M.Asada, T.Jomgeow, S.Aoyagi, Y.Nakano, H.Tamaki,N.Sakaguchi, T.Shirakata, S.Nishida, M.Kawakami, A.Tsuboi, Y.Oka, Y.Tsujimoto,H.Sugiyama Oncogene 2006 25(30) :4217-29.

Furanonaphthoquinones Cause Apoptosis of Cancer Cells by Inducing the Productionof Reactive Oxygen Species by the Mitochondrial Voltage-Dependent AnionChannel. E.Simamura, K.Hirai, H.Shimada, J.Koyama, Y.Niwa, S.Shimizu. Cancer Biology &Therapy 20065:11, 1523-1529.

Role of the mitochondrial membrane permeability transition in cell death.Y.Tsujimoto, S.Shimizu. Apoptosis. 2006 Nov 21; [Epub ahead of print]

Mitochondrial membrane permeability transition and cell death. Y.Tsujimoto,T.Nakagawa, S.Shimizu. Biochim Biophys Acta. 2006 Sep-Oct;1757(9-10):1297-300.

2005年

BH4 peptide derivative from Bcl-xL attenuates ischemia/reperfusion injury thorough anti-apoptotic mechanism in rat hearts. M.Ono, Y.Sawa, M.Ryugo, AN.Alechine, S.Shimizu, R.Sugioka, Y.Tsujimoto, H.Matsuda. Eur J Cardiothorac Surg. 2005 Jan;27(1):117-21.

Two distinct Fas-activated signaling pathways revealed by an antitumordrug D609. L.Zhang, S.Shimizu, Y.Tsujimoto. Oncogene. 2005 Apr 21;24(18):2954-62.

Cyclophilin D-dependent mitochondrial permeability transition regulates some necrotic but not apoptotic cell death. T.Nakagawa, S.Shimizu, T.Watanabe, O.Yamaguchi, K.Otsu, H.Yamagata, H.Inohara, T.Kubo, Y.Tsujimoto. Nature. 2005 Mar 31;434(7033):652-8.

Opening of plasma membrane voltage-dependent anion channels (VDAC) precedes caspase activation in neuronal apoptosis induced by toxic stimuli. F.Elinder, N.Akanda, R.Tofighi, S.Shimizu, Y.Tsujimoto, S.Orrenius, S.Ceccatelli. Cell Death Differ. 2005 Aug;12(8):1134-40.

Chk2 regulates transcription-independent p53-mediated apoptosis in response to DNA damage. C.Chen, S.Shimizu, Y.Tsujimoto, N. Motoyama.Biochem Biophys Res Commun. 2005 Jul 29;333(2):427-31.

Inhibition of the 53BP2S-mediated apoptosis by nuclear factor kappaB andBcl-2 family proteins. N.Takahashi, S.Kobayashi, S.Kajino, K.Imai, K.Tomoda, S.Shimizu, T.Okamoto. Genes Cells. 2005 Aug;10(8):803-11.

Another way to die: autophagic programmed cell death. Y.Tsujimoto, S.Shimizu. Cell Death Differ. 2005 Nov;12 Suppl 2:1528-34.


2004年

JNK promotes Bax translocation to mitochondria through phosphorylationof14-3-3 proteins.F.Tsuruta, J.Sunayama, Y.Mori, S.Hattori, S.Shimizu, Y.Tsujimoto, K.Yoshioka, N.Masuyama, Y.Gotoh.EMBO J. 2004 Apr 21;23(8):1889-99.

A caspase-8-independent signaling pathway activated by Fas ligation leadsto exposure of the Bak N terminus. L.Zhang, S.Shimizu, K.Sakamaki, S.Yonehara, Y.Tsujimoto. J Biol Chem. 2004 Aug 6;279(32):33865-74.

Fzo1, a protein involved in mitochondrial fusion, inhibits apoptosis. R.Sugioka, S.Shimizu, Y.Tsujimoto. J Biol Chem. 2004 Dec 10;279(50):52726-34.

Role of Bcl-2 family proteins in a non-apoptotic programmed cell deathdependent on autophagy genes. S.Shimizu, T.Kanaseki, N.Mizushima, T.Mizuta, S.Arakawa-Kobayashi, CB.Thompson,Y.Tsujimoto..Nat Cell Biol. 2004 Dec;6(12):1221-8.

Structure of the small-molecule Bcl-2 inhibitor (BH3I-2) and its relatedsimple model in protonated and deprotonated forms. D.Kanamori, T.Okamura,H.Yamamoto, S.Shimizu, Y.Tsujimoto, N.Ueyama. Bull Chem. Soc. Jap. 77: 2057-2064, 2004


2003年

14-3-3 interacts directly with and negatively regulates pro-apoptotic Bax.M.Nomura, S.Shimizu, T.Sugiyama, M.Narita, T.Ito, H.Matsuda, Y.Tsujimoto. J Biol Chem. 2003 Jan 17;278(3):2058-65.

nvolvement of histone H1.2 in apoptosis induced by DNA double-strand breaks.A.Konishi, S.Shimizu, J.Hirota, T.Takao, Y.Fan, Y.Matsuoka, L.Zhang, Y.Yoneda, Y.Fujii , AI.Skoultchi,Y.Tsujimoto. ICell. 2003 Sep 19;114(6):673-88.

BH4-domain peptide from Bcl-xL exerts anti-apoptotic activity in vivo.R.Sugioka, S.Shimizu, T.Funatsu, H.Tamagawa, Y.Sawa, T.Kawakami, Y.Tsujimoto. Oncogene. 2003 Nov 20;22(52):8432-40.

Structural divergence of human ghrelin. Identification of multiple ghrelin-derivedmolecules produced by post-translational processing. H.Hosoda, M.Kojima,T.Mizushima, S.Shimizu, K.Kangawa. J Biol Chem. 2003 Jan 3;278(1):64-70.

2002年

Activation of mitochondrial voltage-dependent anion channel by apro-apoptoticBH3-only protein Bim. T.Sugiyama, S.Shimizu, Y.Matsuoka, Y.Yoneda, Y.Tsujimoto. Oncogene. 2002 Jul 25;21(32):4944-56.

Mitochondrial permeability transition mediates apoptosis induced by N-methyl(R)salsolinol,an endogenous neurotoxin, and is inhibited by Bcl-2 and rasagiline, N-propargyl-1(R)-aminoindan.Y.Akao, W.Maruyama, S.Shimizu, H.Yi, Y.Nakagawa, M.Shamoto-Nagai , MB.Youdim, Y.Tsujimoto, M.Naoi. J Neurochem. 2002 Aug;82(4):913-23.

Permeability transition-independent release of mitochondrial cytochromec induced by valinomycin. Y.Shinohara, MR.Almofti, T.Yamamoto , T.Ishida,F.Kita, H.Kanzaki, M.Ohnishi , K.Yamashita, S.Shimizu, H.Terada. Eur J Biochem. 2002 Nov;269(21):5224-30.

The voltage-dependent anion channel: an essential player in apoptosis.Y.Tsujimoto, S.Shimizu. Biochimie. 2002 Feb-Mar;84(2-3):187-93.

2001年

Essential role of voltage-dependent anion channel in various forms of apoptosisin mammalian cells. S.Shimizu, Y.Matsuoka, Y.Shinohara, Y.Yoneda, Y.Tsujimoto. J Cell Biol. 2001 Jan 22;152(2):237-50.

Functional modification of cytochrome c by peroxynitrite in an electrontransfer reaction. H.Nakagawa, Y.Ohshima, M.Takusagawa, N.Ikota, Y.Takahashi, S.Shimizu, T.Ozawa. Chem. Pharm. Bull. 49, 1547-1554, 2001


2000年以前

2000年

Proapoptotic BH3-only Bcl-2 family members induce cytochrome c release, but not mitochondrial membrane potential loss, and do not directly modulate voltage-dependent anion channel activity. S.Shimizu, Y.Tsujimoto. Proc Natl Acad Sci U S A. 2000 Jan 18;97(2):577-82.

BH4 domain of antiapoptotic Bcl-2 family members closes voltage-dependentanion channel and inhibits apoptotic mitochondrial changes and cell death. S.Shimizu, A.Konishi, T.Kodama, Y.Tsujimoto. Proc Natl Acad Sci U S A. 2000 Mar 28;97(7):3100-5.

Electrophysiological study of a novel large pore formed by Bax and the voltage-dependent anion channel that is permeable to cytochrome c. S.Shimizu, T.Ide, T.Yanagida, Y.Tsujimoto. EJ Biol Chem. 2000 Apr 21;275(16):12321-5.

Gelsolin inhibits apoptosis by blocking mitochondrial membrane potential loss and cytochrome c release. RC.Koya, H.Fujita, S.Shimizu, M.Ohtsu, M.Takimoto, Y.Tsujimoto, N.Kuzumaki. J Biol Chem. 2000 May 19;275(20):15343-9.

Bax and Bcl-xL independently regulate apoptotic changes of yeast mitochondria that require VDAC but not adenine nucleotide translocator. S.Shimizu, Y.Shinohara, Y.Tsujimoto. Oncogene. 2000 Sep 7;19(38):4309-18.

Human gelsolin prevents apoptosis by inhibiting apoptotic mitochondrial changes via closing VDAC. H.Kusano, S.Shimizu, RC.Koya, H.Fujita, S.Kamada, N.Kuzumaki, Y.Tsujimoto. Oncogene. 2000 Oct 5;19(42):4807-14.

Bcl-2 family: life-or-death switch. Y.Tsujimoto, S.Shimizu. FEBS Lett. 2000 Jan 21;466(1):6-10.

VDAC regulation by the Bcl-2 family of proteins. Y.Tsujimoto, S.Shimizu. Cell Death Differ. 2000 Dec;7(12):1174-81.

1999年

Bcl-2/E1B 19 kDa-interacting protein 3-like protein (Bnip3L) interactswith bcl-2/Bcl-xL and induces apoptosis by altering mitochondrial membranepermeability.T.Imazu, S.Shimizu, S.Tagami, M.Matsushima, Y.Nakamura, T.Miki, A.Okuyama, Y.Tsujimoto. Oncogene. 1999 Aug 12;18(32):4523-9.

ATP-dependent steps in apoptotic signal transduction. Y.Eguchi, A.Srinivasan,KJ.Tomaselli, S.Shimizu, Y.Tsujimoto. Cancer Res. 1999 May 1;59(9):2174-81.

Bcl-2 family proteins regulate the release of apoptogenic cytochrome cby themitochondrial channel VDAC. S.Shimizu, M.Narita, Y.Tsujimoto. Nature. 1999 Jun 3;399(6735):483-7.

Apoptotic cytosol facilitates Bax translocation to mitochondria that involvescytosolic factor regulated by Bcl-2. M.Nomura, S.Shimizu, T.Ito, M.Narita, H.Matsuda, Y.Tsujimoto. Cancer Res. 1999 Nov 1;59(21):5542-8.

Cancer gene therapy using a pro-apoptotic gene, caspase-3. K.Yamabe, S.Shimizu, T.Ito, Y.Yoshioka, M.Nomura, M.Narita, I.Saito, Y.Kanegae, H.Matsuda. Gene Ther. 1999 Dec;6(12):1952-9.

1998年

Prevention of hypoxic liver cell necrosis by in vivo human bcl-2 gene transfection.K.Yamabe, S.Shimizu, W.Kamiike, S.Waguri, Y.Eguchi, J.Hasegawa, S.Okuno, Y.Yoshioka, T.Ito, Y.Sawa, Y.Uchiyama, Y.Tsujimoto, H.Matsuda. Biochem Biophys Res Commun. 1998 Feb 4;243(1):217-23.

Bcl-2 prevents apoptotic mitochondrial dysfunction by regulating protonflux. S.Shimizu, Y.Eguchi, W.Kamiike, Y.Funahashi, A.Mignon, V.Lacronique, H.Matsuda,Y.Tsujimoto. Proc Natl Acad Sci U S A. 1998 Feb 17;95(4):1455-9

Death-signalling cascade in mouse cerebellar granule neurons. H.Tanabe, Y.Eguchi, S.Shimizu, JC.Martinou, Y.Tsujimoto. Eur J Neurosci. 1998 Apr;10(4):1403-11.

Ceramide formation leads to caspase-3 activation during hypoxic PC12 cell death. Inhibitory effects of Bcl-2 on ceramide formation and caspase-3 activation. S.Yoshimura, Y.Banno, S.Nakashima, K.Takenaka, H.Sakai, Y.Nishimura, N.Sakai, S.Shimizu, Y.Eguchi, Y.Tsujimoto, Y.Nozawa. J Biol Chem. 1998 Mar 20;273(12):6921-7.

Bcl-2 prevents caspase-independent cell death. S.Okuno, S.Shimizu, T.Ito, M.Nomura, E.Hamada, Y.Tsujimoto, H.Matsuda. J Biol Chem. 1998 Dec 18;273(51):34272-7.

Bax interacts with the permeability transition pore to induce permeability transition and cytochrome c release in isolated mitochondria. M.Narita, S.Shimizu, T.Ito, T.Chittenden, RJ.Lutz, H.Matsuda, Y.Tsujimoto. Proc Natl Acad Sci U S A. 1998 Dec 8;95(25):14681-6.

1997年

ntracellular ATP levels determine cell death fate by apoptosis or necrosis. Y.Eguchi, S.Shimizu, Y.Tsujimoto. ICancer Res. 1997 May 15;57(10):1835-40.

Inhibition of apoptosis by the actin-regulatory protein gelsolin. M.Ohtsu, N.Sakai, H.Fujita, M.Kashiwagi, S.Gasa, S.Shimizu, Y.Eguchi, Y.Tsujimoto, Y.Sakiyama, K.Kobayashi, N.Kuzumaki. EMBO J. 1997 Aug 1;16(15):4650-6.

cl-2 and Bcl-xL block apoptosis as well as necrosis: possible involvementof common mediators in apoptotic and necrotic signal transduction pathways.Y.Tsujimoto, S.Shimizu, Y.Eguchi, W.Kamiike, H.Matsuda. BLeukemia. 1997 Apr;11 Suppl 3:380-2.

1996年

Involvement of CPP32/Yama(-like) proteases in Fas-mediated apoptosis. J.Hasegawa,S.Kamada, W.Kamiike, S.Shimizu, T.Imazu, H.Matsuda, Y.Tsujimoto. Cancer Res. 1996 Apr 15;56(8):1713-8.

Induction of apoptosis as well as necrosis by hypoxia and predominant preventionof apoptosis by Bcl-2 and Bcl-XL. S.Shimizu, Y.Eguchi, W.Kamiike, Y.Itoh, J.Hasegawa, K.Yamabe, Y.Otsuki, H.Matsuda, Y.Tsujimoto. Cancer Res. 1996 May 1;56(9):2161-6.

Retardation of chemical hypoxia-induced necrotic cell death by Bcl-2 andICE inhibitors: possible involvement of common mediators in apoptotic andnecrotic signal transductions. S.Shimizu, Y.Eguchi, W.Kamiike, S.Waguri, Y.Uchiyama, H.Matsuda, Y.Tsujimoto. Oncogene. 1996 May 16;12(10):2045-50.

Bcl-2 expression prevents activation of the ICE protease cascade.S.Shimizu, Y.Eguchi, W.Kamiike, H.Matsuda, Y.Tsujimoto. Oncogene. 1996 Jun 6;12(11):2251-7.

Bcl-2 blocks loss of mitochondrial membrane potential while ICE inhibitorsact at a different step during inhibition of death induced by respiratorychain inhibitors. S.Shimizu, Y.Eguchi, W.Kamiike, S.Waguri, Y.Uchiyama, H.Matsuda, Y.Tsujimoto. Oncogene. 1996 Jul 4;13(1):21-9.

Involvement of ICE family proteases in apoptosis induced by reoxygenationof hypoxic hepatocytes. S.Shimizu, Y.Eguchi, W.Kamiike, Y.Akao, H.Kosaka, J.Hasegawa, HMatsuda, Y.Tsujimoto.Am J Physiol. 1996 Dec;271(6 Pt 1):G949-58.

Improvement of rat liver graft function by insulin administration to donor.Y.Morimoto, W.Kamiike, T.Nishida, N.Hatanaka, S.Shimizu, TP.Huang, E.Hamada, Y.Uchiyama, Y.Yoshida, E.Furuya, H.Matsuda. Gastroenterology. 1996 Oct;111(4):1071-80.

1995年

Prevention of hypoxia-induced cell death by Bcl-2 and Bcl-xL. S.Shimizu, Y.Eguchi , H.Kosaka, W.Kamiike, H.Matsuda, Y.Tsujimoto. Nature. 1995 Apr 27 ;374 (6525) :811-3.

New method for measuring ICG Rmax with a clearance meter. S.Shimizu, W.Kamiike, N.Hatanaka, Y.Yoshida, K.Tagawa, M.Miyata, H.Matsuda. World J Surg. 1995 Jan-Feb;19(1):113-8

1994年

Enzyme release from mitochondria during reoxygenation of rat liver. S.Shimizu, W.Kamiike, N.Hatanaka, M.Nishimura, M.Miyata, T.Inoue, Y.Yoshida, K.Tagawa, H.Matsuda. Transplantation. 1994 Jan;57(1):144-8.

Beneficial effects of cyclosporine on reoxygenation injury in hypoxic rat liver. S.Shimizu, W.Kamiike, N.Hatanaka, M.Miyata, T.Inoue T, Y.Yoshida, K.Tagawa, H.Matsuda. Transplantation. 1994 Jun 15;57(11):1562-6.