Hideki Sumimoto

Hideki Sumimoto

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Hideki Sumimoto

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JunB plays a crucial role in development of regulatory T cells by promoting IL-2 signaling.

Mucosal Immunol 2019 Sep 8;12(5):1104-1117. Epub 2019 Jul 8.

Department of Biochemistry, Toho University School of Medicine, 5-21-16 Omorinishi, Ota-ku, Tokyo, 143-8540, Japan.

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http://dx.doi.org/10.1038/s41385-019-0182-0DOI Listing
September 2019

Fhod1, an actin-organizing formin family protein, is dispensable for cardiac development and function in mice.

Cytoskeleton (Hoboken) 2019 Feb 29;76(2):219-229. Epub 2019 Apr 29.

Department of Pharmacology, Faculty of Medicine, University of Miyazaki, Miyazaki, Japan.

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http://dx.doi.org/10.1002/cm.21523DOI Listing
February 2019

Soluble Regulatory Proteins for Activation of NOX Family NADPH Oxidases.

Methods Mol Biol 2019 ;1982:121-137

Department of Biochemistry, Kyushu University Graduate School of Medical Sciences, Fukuoka, Japan.

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http://dx.doi.org/10.1007/978-1-4939-9424-3_8DOI Listing
January 2019

Differential cell surface recruitment of the superoxide-producing NADPH oxidases Nox1, Nox2 and Nox5: The role of the small GTPase Sar1.

Genes Cells 2018 Jun 2;23(6):480-493. Epub 2018 May 2.

Department of Biochemistry, Kyushu University Graduate School of Medical Sciences, Fukuoka, Japan.

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http://dx.doi.org/10.1111/gtc.12590DOI Listing
June 2018

Interaction between cardiac myosin-binding protein C and formin Fhod3.

Proc Natl Acad Sci U S A 2018 05 23;115(19):E4386-E4395. Epub 2018 Apr 23.

Department of Pharmacology, Faculty of Medicine, University of Miyazaki, 889-1692 Miyazaki, Japan;

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http://dx.doi.org/10.1073/pnas.1716498115DOI Listing
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5948958PMC
May 2018

The actin-organizing formin protein Fhod3 is required for postnatal development and functional maintenance of the adult heart in mice.

J Biol Chem 2018 01 20;293(1):148-162. Epub 2017 Nov 20.

From the Department of Biochemistry, Kyushu University Graduate School of Medical Sciences, Fukuoka 812-8582,

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http://dx.doi.org/10.1074/jbc.M117.813931DOI Listing
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5766910PMC
January 2018

TRPC3-Nox2 complex mediates doxorubicin-induced myocardial atrophy.

JCI Insight 2017 Aug 3;2(15). Epub 2017 Aug 3.

Division of Cardiocirculatory Signaling, Okazaki Institute for Integrative Bioscience (National Institute for Physiological Sciences), National Institutes of Natural Sciences, Aichi, Japan.

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http://dx.doi.org/10.1172/jci.insight.93358DOI Listing
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5543921PMC
August 2017

Ric-8A, an activator protein of Gαi, controls mammalian epithelial cell polarity for tight junction assembly and cystogenesis.

Genes Cells 2017 Mar 10;22(3):293-309. Epub 2017 Feb 10.

Department of Biochemistry, Kyushu University Graduate School of Medical Sciences, Fukuoka, 812-8582, Japan.

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http://dx.doi.org/10.1111/gtc.12477DOI Listing
March 2017

Ric-8A-mediated stabilization of the trimeric G protein subunit Gαi is inhibited by pertussis toxin-catalyzed ADP-ribosylation.

Biochem Biophys Res Commun 2017 02 10;483(3):941-945. Epub 2017 Jan 10.

Department of Biochemistry, Kyushu University Graduate School of Medical Sciences, Fukuoka 812-8582, Japan. Electronic address:

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http://dx.doi.org/10.1016/j.bbrc.2017.01.036DOI Listing
February 2017

TRPC3-GEF-H1 axis mediates pressure overload-induced cardiac fibrosis.

Sci Rep 2016 12 19;6:39383. Epub 2016 Dec 19.

Division of Cardiocirculatory Signaling, Okazaki Institute for Integrative Bioscience (National Institute for Physiological Sciences), National Institutes of Natural Sciences, Aichi 444-8787, Japan.

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http://dx.doi.org/10.1038/srep39383DOI Listing
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5171702PMC
December 2016

TRPC3 positively regulates reactive oxygen species driving maladaptive cardiac remodeling.

Sci Rep 2016 11 11;6:37001. Epub 2016 Nov 11.

Division of Cardiocirculatory Signaling, Okazaki Institute for Integrative Bioscience (National Institute for Physiological Sciences), National Institutes of Natural Sciences, Okazaki, Aichi 444-8787, Japan.

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http://dx.doi.org/10.1038/srep37001DOI Listing
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5105134PMC
November 2016

The Nuclear Protein IκBζ Forms a Transcriptionally Active Complex with Nuclear Factor-κB (NF-κB) p50 and the Lcn2 Promoter via the N- and C-terminal Ankyrin Repeat Motifs.

J Biol Chem 2016 09 3;291(39):20739-52. Epub 2016 Aug 3.

From the Department of Biochemistry, Kyushu University Graduate School of Medical Sciences, 3-1-1 Maidashi, Higashi-ku, Fukuoka 812-8582, Japan

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5034063PMC
http://dx.doi.org/10.1074/jbc.M116.719302DOI Listing
September 2016

c-Rel Regulates Inscuteable Gene Expression during Mouse Embryonic Stem Cell Differentiation.

J Biol Chem 2016 Feb 22;291(7):3333-45. Epub 2015 Dec 22.

From the Department of Cell Biology, Institute for Virus Research, Kyoto University, Sakyo-ku, Kyoto 606-8507, Japan, the Department of Mammalian Regulatory Networks, Graduate School of Biostudies, Kyoto University, Sakyo-ku, Kyoto 606-8502, Japan, and

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http://dx.doi.org/10.1074/jbc.M115.679563DOI Listing
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4751378PMC
February 2016

Glucocorticoid augments lipopolysaccharide-induced activation of the IκBζ-dependent genes encoding the anti-microbial glycoproteins lipocalin 2 and pentraxin 3.

J Biochem 2015 May 30;157(5):399-410. Epub 2014 Dec 30.

Department of Biochemistry, Kyushu University Graduate School of Medical Sciences, 3-1-1 Maidashi, Higashi-Ku, Fukuoka 812-8582, Japan; Laboratory of Host Defense, World Premier International Immunology Frontier Research Center, Osaka University, Suita, Osaka 565-0871, Japan; and Research Institute for Microbial Diseases, Osaka University, Suita, Osaka 565-0871, Japan

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http://dx.doi.org/10.1093/jb/mvu086DOI Listing
May 2015

Structural basis of cofactor-mediated stabilization and substrate recognition of the α-tubulin acetyltransferase αTAT1.

Biochem J 2015 Apr;467(1):103-13

*Department of Biochemistry, Kyushu University Graduate School of Medical Sciences, Fukuoka 812-8582, Japan.

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http://biochemj.org/lookup/doi/10.1042/BJ20141193
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http://dx.doi.org/10.1042/BJ20141193DOI Listing
April 2015

Structural basis for the recognition of the scaffold protein Frmpd4/Preso1 by the TPR domain of the adaptor protein LGN.

Acta Crystallogr F Struct Biol Commun 2015 Feb 28;71(Pt 2):175-83. Epub 2015 Jan 28.

Department of Biochemistry, Kyushu University Graduate School of Medical Sciences, 3-1-1 Maidashi, Higashi-ku, Fukuoka 812-8582, Japan.

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http://dx.doi.org/10.1107/S2053230X14028143DOI Listing
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4321472PMC
February 2015

DOCK2 and DOCK5 act additively in neutrophils to regulate chemotaxis, superoxide production, and extracellular trap formation.

J Immunol 2014 Dec 22;193(11):5660-7. Epub 2014 Oct 22.

Division of Immunogenetics, Department of Immunobiology and Neuroscience, Medical Institute of Bioregulation, Kyushu University, Fukuoka 812-8582, Japan; Research Center for Advanced Immunology, Kyushu University, Fukuoka 812-8582, Japan

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http://www.jimmunol.org/lookup/doi/10.4049/jimmunol.1400885
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http://dx.doi.org/10.4049/jimmunol.1400885DOI Listing
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4640904PMC
December 2014

Arachidonic acid induces direct interaction of the p67(phox)-Rac complex with the phagocyte oxidase Nox2, leading to superoxide production.

J Biol Chem 2014 Sep 23;289(36):24874-84. Epub 2014 Jul 23.

From the Department of Biochemistry, Kyushu University Graduate School of Medical Sciences, 3-1-1 Maidashi, Higashi-ku, Fukuoka 812-8582, Japan

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http://dx.doi.org/10.1074/jbc.M114.581785DOI Listing
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4155656PMC
September 2014

DNA element downstream of the κB site in the Lcn2 promoter is required for transcriptional activation by IκBζ and NF-κB p50.

Genes Cells 2014 Aug 20;19(8):620-8. Epub 2014 Jun 20.

Department of Biochemistry, Kyushu University Graduate School of Medical Sciences, Fukuoka, 812-8582, Japan.

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http://dx.doi.org/10.1111/gtc.12162DOI Listing
August 2014

Dilated cardiomyopathy-associated FHOD3 variant impairs the ability to induce activation of transcription factor serum response factor.

Circ J 2013 1;77(12):2990-6. Epub 2013 Oct 1.

Department of Molecular Pathogenesis, Medical Research Institute, Tokyo Medical and Dental University.

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http://dx.doi.org/10.1253/circj.cj-13-0255DOI Listing
July 2014

Visualization of phagosomal hydrogen peroxide production by a novel fluorescent probe that is localized via SNAP-tag labeling.

Anal Chem 2014 Jun 6;86(12):5983-90. Epub 2014 Jun 6.

Departments of Biochemistry and ‡Health Sciences, Kyushu University Graduate School of Medical Sciences , Fukuoka 812-8582, Japan.

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http://dx.doi.org/10.1021/ac501041wDOI Listing
June 2014

N-Linked glycosylation of the superoxide-producing NADPH oxidase Nox1.

Biochem Biophys Res Commun 2014 Jan 21;443(3):1060-5. Epub 2013 Dec 21.

Department of Biochemistry, Kyushu University Graduate School of Medical Sciences, 3-1-1 Maidashi, Higashi-ku, Fukuoka 812-8582, Japan. Electronic address:

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http://dx.doi.org/10.1016/j.bbrc.2013.12.086DOI Listing
January 2014

Phosphorylation of Noxo1 at threonine 341 regulates its interaction with Noxa1 and the superoxide-producing activity of Nox1.

FEBS J 2013 Oct 12;280(20):5145-59. Epub 2013 Sep 12.

Department of Biochemistry, Kyushu University Graduate School of Medical Sciences, Fukuoka, Japan.

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http://doi.wiley.com/10.1111/febs.12489
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http://dx.doi.org/10.1111/febs.12489DOI Listing
October 2013

The cell polarity protein mInsc regulates neutrophil chemotaxis via a noncanonical G protein signaling pathway.

Dev Cell 2013 Aug 25;26(3):292-302. Epub 2013 Jul 25.

Department of Biochemistry, Kyushu University Graduate School of Medical Sciences, Fukuoka 812-8582, Japan.

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http://dx.doi.org/10.1016/j.devcel.2013.06.008DOI Listing
August 2013

Ubiquitination of the heterotrimeric G protein α subunits Gαi2 and Gαq is prevented by the guanine nucleotide exchange factor Ric-8A.

Biochem Biophys Res Commun 2013 Jun 9;435(3):414-9. Epub 2013 May 9.

Department of Biochemistry, Kyushu University, Graduate School of Medical Sciences, 3-1-1 Maidashi, Fukuoka 812-8582, Japan.

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http://dx.doi.org/10.1016/j.bbrc.2013.04.103DOI Listing
June 2013

Interaction of NuMA protein with the kinesin Eg5: its possible role in bipolar spindle assembly and chromosome alignment.

Biochem J 2013 Apr;451(2):195-204

Department of Biochemistry, Kyushu University Graduate School of Medical Sciences, 3-1-1 Maidashi, Fukuoka 812-8582, Japan.

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http://www.biochemj.org/content/ppbiochemj/451/2/195.full.pd
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http://biochemj.org/lookup/doi/10.1042/BJ20121447
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http://dx.doi.org/10.1042/BJ20121447DOI Listing
April 2013

The WD40 protein Morg1 facilitates Par6-aPKC binding to Crb3 for apical identity in epithelial cells.

J Cell Biol 2013 Mar 25;200(5):635-50. Epub 2013 Feb 25.

Department of Biochemistry, Kyushu University Graduate School of Medical Sciences, Fukuoka, Japan.

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http://dx.doi.org/10.1083/jcb.201208150DOI Listing
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3587828PMC
March 2013

High cell-autonomy of the anterior endomesoderm viewed in blastomere fate shift during regulative development in the isolated right halves of four-cell stage Xenopus embryos.

Dev Growth Differ 2012 Sep;54(7):717-29

Department of Earth System Science, Faculty of Science, Fukuoka University, Nanakuma, Fukuoka, 814-0180, Japan.

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http://dx.doi.org/10.1111/j.1440-169X.2012.01372.xDOI Listing
September 2012

Mammalian formin Fhod3 plays an essential role in cardiogenesis by organizing myofibrillogenesis.

Biol Open 2012 Sep 18;1(9):889-96. Epub 2012 Jul 18.

Department of Biochemistry, Kyushu University Graduate School of Medical Sciences , 3-1-1 Maidashi, Higashi-ku, Fukuoka 812-8582 , Japan.

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http://dx.doi.org/10.1242/bio.20121370DOI Listing
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3507241PMC
September 2012

Expression and subcellular localization of mammalian formin Fhod3 in the embryonic and adult heart.

PLoS One 2012 11;7(4):e34765. Epub 2012 Apr 11.

Department of Biochemistry, Graduate School of Medical Sciences, Kyushu University, Fukuoka, Japan.

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http://journals.plos.org/plosone/article?id=10.1371/journal.pone.0034765PLOS
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3324543PMC
August 2012

Rab27 effector Slp2-a transports the apical signaling molecule podocalyxin to the apical surface of MDCK II cells and regulates claudin-2 expression.

Mol Biol Cell 2012 Aug 5;23(16):3229-39. Epub 2012 Jul 5.

Laboratory of Membrane Trafficking Mechanisms, Department of Developmental Biology and Neurosciences, Graduate School of Life Sciences, Tohoku University, Aoba-ku, Sendai, Miyagi, Japan.

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http://www.molbiolcell.org/doi/10.1091/mbc.e12-02-0104
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http://dx.doi.org/10.1091/mbc.E12-02-0104DOI Listing
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3418316PMC
August 2012

Assessment of the role for Rho family GTPases in NADPH oxidase activation.

Methods Mol Biol 2012 ;827:195-212

Department of Biochemistry, Kyushu University Graduate School of Medical Sciences, Fukuoka, Japan.

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http://dx.doi.org/10.1007/978-1-61779-442-1_14DOI Listing
April 2012

Noxa1 as a moderate activator of Nox2-based NADPH oxidase.

Arch Biochem Biophys 2012 Mar 8;519(1):1-7. Epub 2012 Jan 8.

Department of Applied Chemistry, Graduate School of Science and Engineering, Ehime University, 3 Bunkyo-cho, Matsuyama, Ehime 790-8577, Japan.

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http://dx.doi.org/10.1016/j.abb.2011.12.025DOI Listing
March 2012

Structural basis for interaction between the conserved cell polarity proteins Inscuteable and Leu-Gly-Asn repeat-enriched protein (LGN).

Proc Natl Acad Sci U S A 2011 Nov 10;108(48):19210-5. Epub 2011 Nov 10.

Department of Biochemistry, Kyushu University Graduate School of Medical Sciences, Fukuoka 812-8582, Japan.

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http://dx.doi.org/10.1073/pnas.1110951108DOI Listing
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3228485PMC
November 2011

Polarity proteins Bem1 and Cdc24 are components of the filamentous fungal NADPH oxidase complex.

Proc Natl Acad Sci U S A 2011 Feb 31;108(7):2861-6. Epub 2011 Jan 31.

Graduate School of Bioagricultural Sciences, Nagoya University, Chikusa, Nagoya 464-8601, Japan.

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http://dx.doi.org/10.1073/pnas.1017309108DOI Listing
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3041104PMC
February 2011

Leukotriene B4 augments and restores Fc gammaRs-dependent phagocytosis in macrophages.

J Biol Chem 2010 Dec 19;285(52):41113-21. Epub 2010 Oct 19.

Department of Medical Biochemistry, Graduate School of Medical Sciences, Kyushu University, Higashi-ku, Fukuoka 812-8582, Japan.

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http://dx.doi.org/10.1074/jbc.M110.175497DOI Listing
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3003409PMC
December 2010

A conserved region between the TPR and activation domains of p67phox participates in activation of the phagocyte NADPH oxidase.

J Biol Chem 2010 Oct 2;285(41):31435-45. Epub 2010 Aug 2.

Department of Biochemistry, Kyushu University Graduate School of Medical Sciences, Fukuoka 812-8582, Japan.

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http://dx.doi.org/10.1074/jbc.M110.161166DOI Listing
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2951218PMC
October 2010

Effects of F/G-actin ratio and actin turn-over rate on NADPH oxidase activity in microglia.

BMC Immunol 2010 Sep 8;11:44. Epub 2010 Sep 8.

Dept of Cellular and Molecular Medicine, The Panum Institute, Copenhagen University, 2200N Copenhagen, Denmark.

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http://dx.doi.org/10.1186/1471-2172-11-44DOI Listing
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2944333PMC
September 2010

The domain organization of p67 phox, a protein required for activation of the superoxide-producing NADPH oxidase in phagocytes.

J Innate Immun 2009 18;1(6):543-55. Epub 2009 Aug 18.

Department of Biochemistry, Kyushu University Graduate School of Medical Sciences, Kyushu University, Fukuoka, Japan.

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http://dx.doi.org/10.1159/000235656DOI Listing
May 2010

Membrane phospholipid metabolism during phagocytosis in human neutrophils.

Genes Cells 2010 May 6;15(5):409-24. Epub 2010 Apr 6.

Department of Biochemistry, Kyushu University Graduate School of Medical Sciences, Fukuoka 812-8582, Japan.

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http://dx.doi.org/10.1111/j.1365-2443.2010.01393.xDOI Listing
May 2010

Mammalian formin fhod3 regulates actin assembly and sarcomere organization in striated muscles.

J Biol Chem 2009 Oct 25;284(43):29873-81. Epub 2009 Aug 25.

Department of Biochemistry, Graduate School of Medical Sciences, Fukuoka, Japan.

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http://dx.doi.org/10.1074/jbc.M109.059303DOI Listing
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2785617PMC
October 2009

NMR structure of the heterodimer of Bem1 and Cdc24 PB1 domains from Saccharomyces cerevisiae.

J Biochem 2009 Sep 18;146(3):317-25. Epub 2009 May 18.

Department of Structural Biology, Graduate School of Pharmaceutical Sciences, Hokkaido University, Kita 12 Nishi 6, Kita-ku, Sapporo 060-0812, Japan.

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http://dx.doi.org/10.1093/jb/mvp075DOI Listing
September 2009

[Structure of reactive oxygen-producing NADPH oxidase and its activation mechanism].

Authors:
Hideki Sumimoto

Tanpakushitsu Kakusan Koso 2009 Sep;54(12 Suppl):1690-5

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September 2009

The insert region of the Rac GTPases is dispensable for activation of superoxide-producing NADPH oxidases.

Biochem J 2009 Aug 13;422(2):373-82. Epub 2009 Aug 13.

Department of Biochemistry, Kyushu University Graduate School of Medical Sciences, 3-1-1 Maidashi, Higashi-ku, Fukuoka 812-8582, Japan.

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http://dx.doi.org/10.1042/BJ20082182DOI Listing
August 2009

A region N-terminal to the tandem SH3 domain of p47phox plays a crucial role in the activation of the phagocyte NADPH oxidase.

Biochem J 2009 Apr;419(2):329-38

Department of Biochemistry, Kyushu University Graduate School of Medical Sciences, Kyushu University, 3-1-1 Maidashi, Higashi-ku, Fukuoka 812-8582, Japan.

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http://dx.doi.org/10.1042/BJ20082028DOI Listing
April 2009

Role for the first SH3 domain of p67phox in activation of superoxide-producing NADPH oxidases.

Biochem Biophys Res Commun 2009 Feb 29;379(2):589-93. Epub 2008 Dec 29.

Department of Biochemistry, Kyushu University Graduate School of Medical Sciences, 3-1-1 Maidashi, Higashi-ku, Fukuoka 812-8582, Japan.

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http://dx.doi.org/10.1016/j.bbrc.2008.12.112DOI Listing
February 2009

Structure, regulation and evolution of Nox-family NADPH oxidases that produce reactive oxygen species.

Authors:
Hideki Sumimoto

FEBS J 2008 Jul 30;275(13):3249-77. Epub 2008 May 30.

Medical Institute of Bioregulation, Kyushu University, Fukuoka CREST, Japan Science and Technology Agency, Tokyo, Japan.

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http://dx.doi.org/10.1111/j.1742-4658.2008.06488.xDOI Listing
July 2008

Characterization of teleost phagocyte NADPH oxidase: molecular cloning and expression analysis of carp (Cyprinus carpio) phagocyte NADPH oxidase.

Mol Immunol 2008 Mar 7;45(6):1720-31. Epub 2007 Nov 7.

Laboratory of Fish Pathology, Department of Veterinary Medicine, Nihon University, Kameino 1866, Fujisawa, Kanagawa 252-8510, Japan.

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http://dx.doi.org/10.1016/j.molimm.2007.09.028DOI Listing
March 2008

Role of the small GTPase Rac in p22phox-dependent NADPH oxidases.

Biochimie 2007 Sep 17;89(9):1133-44. Epub 2007 May 17.

Medical Institute of Bioregulation, Kyushu University, 3-1-1 Maidashi, Higashi-ku, Fukuoka 812-8582, Japan.

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http://dx.doi.org/10.1016/j.biochi.2007.05.003DOI Listing
September 2007

Structure and function of the PB1 domain, a protein interaction module conserved in animals, fungi, amoebas, and plants.

Sci STKE 2007 Aug 28;2007(401):re6. Epub 2007 Aug 28.

Medical Institute of Bioregulation, Kyushu University, Maidashi, Higashi-ku, Fukuoka, Japan.

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http://dx.doi.org/10.1126/stke.4012007re6DOI Listing
August 2007

A regulated adaptor function of p40phox: distinct p67phox membrane targeting by p40phox and by p47phox.

Mol Biol Cell 2007 Feb 22;18(2):441-54. Epub 2006 Nov 22.

Laboratory of Molecular Pharmacology, Biosignal Research Center, Kobe University, Kobe 657-8501, Japan.

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http://dx.doi.org/10.1091/mbc.e06-08-0731DOI Listing
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC1783789PMC
February 2007

Full-length p40phox structure suggests a basis for regulation mechanism of its membrane binding.

EMBO J 2007 Feb 8;26(4):1176-86. Epub 2007 Feb 8.

Laboratory of Structural Biology, Graduate School of Pharmaceutical Sciences, Hokkaido University, Sapporo, Japan.

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http://dx.doi.org/10.1038/sj.emboj.7601561DOI Listing
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC1852833PMC
February 2007

Transient receptor potential (TRP) protein 7 acts as a G protein-activated Ca2+ channel mediating angiotensin II-induced myocardial apoptosis.

Mol Cell Biochem 2007 Jan 13;294(1-2):205-15. Epub 2006 Jul 13.

Division of Molecular and Clinical Gerontology, Department of Molecular and Cellular Biology, Medical Institute of Bioregulation, Kyushu University, 4546 Tsurumihara, Beppu, 874-0838, Japan.

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http://dx.doi.org/10.1007/s11010-006-9261-0DOI Listing
January 2007

Regulation of novel superoxide-producing NAD(P)H oxidases.

Antioxid Redox Signal 2006 Sep-Oct;8(9-10):1523-32

Medical Institute of Bioregulation, Kyushu University, Fukuoka, Japan.

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http://dx.doi.org/10.1089/ars.2006.8.1523DOI Listing
January 2007

Interaction between the SH3 domains and C-terminal proline-rich region in NADPH oxidase organizer 1 (Noxo1).

Biochem Biophys Res Commun 2007 Jan 20;352(2):560-5. Epub 2006 Nov 20.

Medical Institute of Bioregulation, Kyushu University, 3-1-1 Maidashi, Fukuoka 812-8582, Japan.

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http://linkinghub.elsevier.com/retrieve/pii/S0006291X0602543
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http://dx.doi.org/10.1016/j.bbrc.2006.11.060DOI Listing
January 2007

Expression of isoforms of NADPH oxidase components in rat pancreatic islets.

Life Sci 2006 Dec 1;80(2):133-9. Epub 2006 Sep 1.

Department of Medicine and Clinical Science, Graduate School of Medical Sciences, Kyushu University, Maidashi 3-1-1, Higashi-ku, Fukuoka 812-8582, Japan.

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http://dx.doi.org/10.1016/j.lfs.2006.08.031DOI Listing
December 2006

TRPC3 and TRPC6 are essential for angiotensin II-induced cardiac hypertrophy.

EMBO J 2006 Nov 2;25(22):5305-16. Epub 2006 Nov 2.

Department of Pharmacology and Toxicology, Graduate School of Pharmaceutical Sciences, Kyushu University, Higashi-ku, Fukuoka.

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http://dx.doi.org/10.1038/sj.emboj.7601417DOI Listing
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC1636614PMC
November 2006

Crystallization and preliminary crystallographic analysis of p40phox, a regulatory subunit of NADPH oxidase.

Acta Crystallogr Sect F Struct Biol Cryst Commun 2006 Oct 30;62(Pt 10):1018-20. Epub 2006 Sep 30.

Department of Structural Biology, Graduate School of Pharmaceutical Sciences, Hokkaido University, N-12, W-6, Kita-ku, Sapporo 060-0812, Japan.

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http://dx.doi.org/10.1107/S1744309106036256DOI Listing
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2225170PMC
October 2006

Increased expression of gp91phox homologues of NAD(P)H oxidase in the aortic media during chronic hypertension: involvement of the renin-angiotensin system.

Hypertens Res 2006 Oct;29(10):813-20

Department of Medicine and Clinical Science, Graduate School of Medical Sciences, Kyushu University, Fukuoka, Japan.

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http://dx.doi.org/10.1291/hypres.29.813DOI Listing
October 2006

Direct involvement of the small GTPase Rac in activation of the superoxide-producing NADPH oxidase Nox1.

J Biol Chem 2006 Aug 8;281(31):21857-68. Epub 2006 Jun 8.

Medical Institute of Bioregulation, Kyushu University, 3-1-1 Maidashi, Higashi-ku, Fukuoka 812-8582, Japan.

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http://dx.doi.org/10.1074/jbc.M513665200DOI Listing
August 2006

Expression and function of Noxo1gamma, an alternative splicing form of the NADPH oxidase organizer 1.

FEBS J 2006 Aug;273(16):3663-77

Medical Institute of Bioregulation, Kyushu University, Fukuoka, Japan.

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http://dx.doi.org/10.1111/j.1742-4658.2006.05371.xDOI Listing
August 2006

Two forms of human Inscuteable-related protein that links Par3 to the Pins homologues LGN and AGS3.

Biochem Biophys Res Commun 2006 Mar 24;341(4):1001-6. Epub 2006 Jan 24.

Medical Institute of Bioregulation, Kyushu University, 3-1-1 Maidashi, Higashi-ku, Fukuoka 812-8582, Japan.

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http://dx.doi.org/10.1016/j.bbrc.2006.01.050DOI Listing
March 2006

Regulation of superoxide-producing NADPH oxidases in nonphagocytic cells.

Methods Enzymol 2006 ;406:456-68

Medical Institute of Bioregulation, Kyushu University, Fuku-oka, Japan.

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http://linkinghub.elsevier.com/retrieve/pii/S007668790606034
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http://dx.doi.org/10.1016/S0076-6879(06)06034-4DOI Listing
March 2006

NMR solution structure of the tandem Src homology 3 domains of p47phox complexed with a p22phox-derived proline-rich peptide.

J Biol Chem 2006 Feb 2;281(6):3660-8. Epub 2005 Dec 2.

Department of Structural Biology, Graduate School of Pharmaceutical Sciences, Hokkaido University, N-12 W-6, Kita-ku, Sapporo 060-0812, Japan.

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http://dx.doi.org/10.1074/jbc.M505193200DOI Listing
February 2006

[Phagocytosis and killing of microorganisms].

Tanpakushitsu Kakusan Koso 2006 Feb;51(2):109-17

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February 2006

Molecular composition and regulation of the Nox family NAD(P)H oxidases.

Biochem Biophys Res Commun 2005 Dec 6;338(1):677-86. Epub 2005 Sep 6.

Medical Institute of Bioregulation, Kyushu University, 3-1-1 Maidashi, Higashi-ku, Fukuoka 812-8582, Japan.

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http://dx.doi.org/10.1016/j.bbrc.2005.08.210DOI Listing
December 2005

Statin attenuates high glucose-induced and diabetes-induced oxidative stress in vitro and in vivo evaluated by electron spin resonance measurement.

Free Radic Biol Med 2005 Aug;39(4):444-52

Department of Medicine and Bioregulatory Science, Graduate School of Medical Sciences, Kyushu University, Fukuoka 812-8582, Japan.

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http://dx.doi.org/10.1016/j.freeradbiomed.2005.03.031DOI Listing
August 2005

Fhos2, a novel formin-related actin-organizing protein, probably associates with the nestin intermediate filament.

Genes Cells 2005 Jul;10(7):665-78

Medical Institute of Bioregulation, Kyushu University, 3-1-1 Maidashi, Higashi-ku, Fukuoka 812-8582, Japan.

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http://dx.doi.org/10.1111/j.1365-2443.2005.00867.xDOI Listing
July 2005

The NADPH oxidase Nox3 constitutively produces superoxide in a p22phox-dependent manner: its regulation by oxidase organizers and activators.

J Biol Chem 2005 Jun 11;280(24):23328-39. Epub 2005 Apr 11.

Medical Institute of Bioregulation, Kyushu University, Fukuoka, Japan.

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http://dx.doi.org/10.1074/jbc.M414548200DOI Listing
June 2005

Phosphorylation-dependent binding of 14-3-3 to Par3beta, a human Par3-related cell polarity protein.

Biochem Biophys Res Commun 2005 Apr;329(1):211-8

Medical Institute of Bioregulation, Kyushu University, 3-1-1 Maidashi, Higashi-ku, Fukuoka 812-8582, Japan.

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http://dx.doi.org/10.1016/j.bbrc.2005.01.115DOI Listing
April 2005

[Roles and activation mechanisms of Nox family oxidases in animals].

Authors:
Hideki Sumimoto

Tanpakushitsu Kakusan Koso 2005 Apr;50(4):302-9

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April 2005

Structure of a cell polarity regulator, a complex between atypical PKC and Par6 PB1 domains.

J Biol Chem 2005 Mar 7;280(10):9653-61. Epub 2004 Dec 7.

Department of Structural Biology, Graduate School of Pharmaceutical Sciences, Hokkaido University, N-12, W-6, Kita-ku, Sapporo 060-0812, Japan.

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http://www.jbc.org/content/280/10/9653.full.pdf
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http://www.jbc.org/cgi/doi/10.1074/jbc.M409823200
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March 2005

Helicobacter pylori lipopolysaccharide activates Rac1 and transcription of NADPH oxidase Nox1 and its organizer NOXO1 in guinea pig gastric mucosal cells.

Am J Physiol Cell Physiol 2005 Feb 6;288(2):C450-7. Epub 2004 Oct 6.

Department of Nutritional Physiology, Institute of Health Biosciences, The University of Tokushima Graduate School, Tokushima, Japan.

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http://www.physiology.org/doi/10.1152/ajpcell.00319.2004
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http://dx.doi.org/10.1152/ajpcell.00319.2004DOI Listing
February 2005

Cloning of rat p47phox and comparison with human p47phox.

DNA Seq 2005 Feb;16(1):65-8

Department of Medical Biochemistry and Biophysics, Division of Physiological Chemistry II, Karolinska Institutet, S-171 77, Stockholm, Sweden.

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http://www.tandfonline.com/doi/full/10.1080/1042517040002822
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http://dx.doi.org/10.1080/10425170400028228DOI Listing
February 2005

On the mechanism of cell lysis by deformation.

J Biomech 2005 Jan;38(1):117-24

Institute for Materials Chemistry and Engineering, Kyushu University, 6-1 Kasugakoen, Kasuga, Fukuoka 816-8580, Japan.

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http://dx.doi.org/10.1016/j.jbiomech.2004.03.011DOI Listing
January 2005

Sulfonylurea as well as elevated glucose levels stimulate reactive oxygen species production in the pancreatic beta-cell line, MIN6-a role of NAD(P)H oxidase in beta-cells.

Biochem Biophys Res Commun 2005 Jan;326(1):60-5

Department of Medicine and Bioregulatory Science, Graduate School of Medical Sciences, Kyushu University, Fukuoka 812-8582, Japan.

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http://dx.doi.org/10.1016/j.bbrc.2004.10.201DOI Listing
January 2005

Regulation of Bin1 SH3 domain binding by phosphoinositides.

EMBO J 2004 Nov 14;23(22):4413-22. Epub 2004 Oct 14.

Department of Molecular Biology, Osaka Bioscience Institute, Suita, Japan.

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http://dx.doi.org/10.1038/sj.emboj.7600442DOI Listing
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC526460PMC
November 2004

Molecular mechanism underlying activation of superoxide-producing NADPH oxidases: roles for their regulatory proteins.

Jpn J Infect Dis 2004 Oct;57(5):S24-5

Medical Institute of Bioregulation, Kyushu Univerisity, Fukuoka, Japan.

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October 2004

Catalytic residues of group VIB calcium-independent phospholipase A2 (iPLA2gamma).

Biochem Biophys Res Commun 2004 Aug;320(4):1284-90

Medical Institute of Bioregulation, Kyushu University, 3-1-1 Maidashi, Higashi-ku, Fukuoka 812-8582, Japan.

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http://dx.doi.org/10.1016/j.bbrc.2004.05.225DOI Listing
August 2004

Involvement of TRPM7 in cell growth as a spontaneously activated Ca2+ entry pathway in human retinoblastoma cells.

J Pharmacol Sci 2004 Aug 24;95(4):403-19. Epub 2004 Jul 24.

Department of Pharmacology, Graduate School of Medical Sciences, Kyushu University, Fukuoka 812-8582, Japan.

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http://dx.doi.org/10.1254/jphs.fp0040273DOI Listing
August 2004