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Hironori Katoh
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Research Profile (preview)
Chemicals & Drugs
Living Beings
Anatomy
Physiology
Phenomena
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Network (preview)
60
Negishi, Manabu
11
Yamaguchi, Yoshiaki
11
Ichikawa, Atsushi
10
Aoki, J
10
Hasegawa, H
9
Nakamura, Kozo
9
Oinuma, Izumi
8
Fujita, Hirotada
6
Ishikawa, Yukio
6
Yasui, H
5
Kaneko, Takeshi
5
Mori, Kazuhiro
5
Mori, Kazutoshi
4
Hiramoto, Kiyo
3
Harada, Amane
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Publications
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All Publications
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2009: Katoh Hironori
[Regulation of cell morphology and motility by Dock family proteins]
Seikagaku. The Journal of Japanese Biochemical Society 2009;81(8):711-6.
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2009: Kuramoto Kazuya; Negishi Manabu; Katoh Hironori
Regulation of dendrite growth by the Cdc42 activator Zizimin1/Dock9 in hippocampal neurons.
Journal of neuroscience research 2009;87(8):1794-805.
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2009: Takeuchi Shingo; Yamaki Nao; Iwasato Takuji; Negishi Manabu; Katoh Hironori
Beta2-chimaerin binds to EphA receptors and regulates cell migration.
FEBS letters 2009;583(8):1237-42.
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2009: Uesugi Kanami; Oinuma Izumi; Katoh Hironori; Negishi Manabu
Different requirement for Rnd GTPases of R-Ras GAP activity of Plexin-C1 and Plexin-D1.
The Journal of biological chemistry 2009;284(11):6743-51.
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2008: Yamazaki Junya; Katoh Hironori; Negishi Manabu
Lysophosphatidic acid and thrombin receptors require both G alpha12 and G alpha13 to regulate axonal morphology in hippocampal neurons.
Biological & pharmaceutical bulletin 2008;31(12):2216-22.
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2008: Ueda Shuhei; Fujimoto Satoshi; Hiramoto Kiyo; Negishi Manabu; Katoh Hironori
Dock4 regulates dendritic development in hippocampal neurons.
Journal of neuroscience research 2008;86(14):3052-61.
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2007: Yamaki Nao; Negishi Manabu; Katoh Hironori
RhoG regulates anoikis through a phosphatidylinositol 3-kinase-dependent mechanism.
Experimental cell research 2007;313(13):2821-32.
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2007: Nakase Ikuhiko; Tadokoro Akiko; Kawabata Noriko; Takeuchi Toshihide; Katoh Hironori; Hiramoto Kiyo; Negishi Manabu; Nomizu Motoyoshi; Sugiura Yukio; Futaki Shiroh
Interaction of arginine-rich peptides with membrane-associated proteoglycans is crucial for induction of actin organization and macropinocytosis.
Biochemistry 2007;46(2):492-501.
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2007: Oinuma Izumi; Katoh Hironori; Negishi Manabu
R-Ras controls axon specification upstream of glycogen synthase kinase-3beta through integrin-linked kinase.
The Journal of biological chemistry 2007;282(1):303-18.
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2006: Hiramoto Kiyo; Negishi Manabu; Katoh Hironori
Dock4 is regulated by RhoG and promotes Rac-dependent cell migration.
Experimental cell research 2006;312(20):4205-16.
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2006: Kakimoto Tetsuhiro; Katoh Hironori; Negishi Manabu
Regulation of neuronal morphology by Toca-1, an F-BAR/EFC protein that induces plasma membrane invagination.
The Journal of biological chemistry 2006;281(39):29042-53.
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2006: Ito Yuri; Oinuma Izumi; Katoh Hironori; Kaibuchi Kozo; Negishi Manabu
Sema4D/plexin-B1 activates GSK-3beta through R-Ras GAP activity, inducing growth cone collapse.
EMBO reports 2006;7(7):704-9.
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2006: Ishikawa Yukio; Katoh Hironori; Negishi Manabu
Small GTPase Rnd1 is involved in neuronal activity-dependent dendritic development in hippocampal neurons.
Neuroscience letters 2006;400(3):218-23.
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2006: Oinuma Izumi; Katoh Hironori; Negishi Manabu
Semaphorin 4D/Plexin-B1-mediated R-Ras GAP activity inhibits cell migration by regulating beta(1) integrin activity.
The Journal of cell biology 2006;173(4):601-13.
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2006: Tanaka Hiroko; Katoh Hironori; Negishi Manabu
Pragmin, a novel effector of Rnd2 GTPase, stimulates RhoA activity.
The Journal of biological chemistry 2006;281(15):10355-64.
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2006: Katoh Hironori; Fujimoto Satoshi; Ishida Chisaki; Ishikawa Yukio; Negishi Manabu
Differential distribution of ELMO1 and ELMO2 mRNAs in the developing mouse brain.
Brain research 2006;1073-1074():103-8.
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2006: Nakamura Kazuhiro; Yamashita Yoko; Tamamaki Nobuaki; Katoh Hironori; Kaneko Takeshi; Negishi Manabu
In vivo function of Rnd2 in the development of neocortical pyramidal neurons.
Neuroscience research 2006;54(2):149-53.
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2006: Katoh Hironori; Hiramoto Kiyo; Negishi Manabu
Activation of Rac1 by RhoG regulates cell migration.
Journal of cell science 2006;119(Pt 1):56-65.
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2005: Negishi Manabu; Oinuma Izumi; Katoh Hironori
R-ras as a key player for signaling pathway of plexins.
Molecular neurobiology 2005;32(3):217-22.
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2005: Tateiwa Katsunori; Katoh Hironori; Negishi Manabu
Socius, a novel binding partner of Galpha12/13, promotes the Galpha12-induced RhoA activation.
Biochemical and biophysical research communications 2005;337(2):615-20.
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2005: Yamazaki Junya; Katoh Hironori; Yamaguchi Yoshiaki; Negishi Manabu
Two G12 family G proteins, G alpha12 and G alpha13, show different subcellular localization.
Biochemical and biophysical research communications 2005;332(3):782-6.
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2005: Negishi Manabu; Katoh Hironori
Rho family GTPases and dendrite plasticity.
The Neuroscientist : a review journal bringing neurobiology, neurology and psychiatry 2005;11(3):187-91.
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2005: Negishi M; Oinuma I; Katoh H
Plexins: axon guidance and signal transduction.
Cellular and molecular life sciences : CMLS 2005;62(12):1363-71.
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2005: Harada Amane; Katoh Hironori; Negishi Manabu
Direct interaction of Rnd1 with FRS2 beta regulates Rnd1-induced down-regulation of RhoA activity and is involved in fibroblast growth factor-induced neurite outgrowth in PC12 cells.
The Journal of biological chemistry 2005;280(18):18418-24.
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2004: Oinuma Izumi; Katoh Hironori; Negishi Manabu
Molecular dissection of the semaphorin 4D receptor plexin-B1-stimulated R-Ras GTPase-activating protein activity and neurite remodeling in hippocampal neurons.
The Journal of neuroscience : the official journal of the Society for Neuroscience 2004;24(50):11473-80.
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2004: Oinuma Izumi; Ishikawa Yukio; Katoh Hironori; Negishi Manabu
The Semaphorin 4D receptor Plexin-B1 is a GTPase activating protein for R-Ras.
Science (New York, N.Y.) 2004;305(5685):862-5.
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2004: Kakimoto Tetsuhiro; Katoh Hironori; Negishi Manabu
Identification of splicing variants of Rapostlin, a novel RND2 effector that interacts with neural Wiskott-Aldrich syndrome protein and induces neurite branching.
The Journal of biological chemistry 2004;279(14):14104-10.
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2003: Ishikawa Yukio; Katoh Hironori; Negishi Manabu
A role of Rnd1 GTPase in dendritic spine formation in hippocampal neurons.
The Journal of neuroscience : the official journal of the Society for Neuroscience 2003;23(35):11065-72.
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2003: Katoh Hironori; Negishi Manabu
RhoG activates Rac1 by direct interaction with the Dock180-binding protein Elmo.
Nature 2003;424(6947):461-4.
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2003: Oinuma Izumi; Katoh Hironori; Harada Amane; Negishi Manabu
Direct interaction of Rnd1 with Plexin-B1 regulates PDZ-RhoGEF-mediated Rho activation by Plexin-B1 and induces cell contraction in COS-7 cells.
The Journal of biological chemistry 2003;278(28):25671-7.
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2003: Yamaguchi Yoshiaki; Katoh Hironori; Negishi Manabu
N-terminal short sequences of alpha subunits of the G12 family determine selective coupling to receptors.
The Journal of biological chemistry 2003;278(17):14936-9.
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2002: Fujita Hirotada; Katoh Hironori; Ishikawa Yukio; Mori Kazutoshi; Negishi Manabu
Rapostlin is a novel effector of Rnd2 GTPase inducing neurite branching.
The Journal of biological chemistry 2002;277(47):45428-34.
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2002: Ishikawa Yukio; Katoh Hironori; Nakamura Kazuhiro; Mori Kazutoshi; Negishi Manabu
Developmental changes in expression of small GTPase RhoG mRNA in the rat brain.
Brain research. Molecular brain research 2002;106(1-2):145-50.
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2002: Negishi Manabu; Katoh Hironori
Cyclopentenone prostaglandin receptors.
Prostaglandins & other lipid mediators 2002;68-69():611-7.
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2002: Yamaguchi Yoshiaki; Katoh Hironori; Mori Kazutoshi; Negishi Manabu
Galpha(12) and Galpha(13) interact with Ser/Thr protein phosphatase type 5 and stimulate its phosphatase activity.
Current biology : CB 2002;12(15):1353-8.
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2002: Negishi Manabu; Katoh Hironori
Rho family GTPases as key regulators for neuronal network formation.
Journal of biochemistry 2002;132(2):157-66.
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2002: Tanaka Hiroko; Fujita Hirotada; Katoh Hironori; Mori Kazutoshi; Negishi Manabu
Vps4-A (vacuolar protein sorting 4-A) is a binding partner for a novel Rho family GTPase, Rnd2.
The Biochemical journal 2002;365(Pt 2):349-53.
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2002: Nakamura Kazuhiro; Matsumura Kiyoshi; Kaneko Takeshi; Kobayashi Shigeo; Katoh Hironori; Negishi Manabu
The rostral raphe pallidus nucleus mediates pyrogenic transmission from the preoptic area.
The Journal of neuroscience : the official journal of the Society for Neuroscience 2002;22(11):4600-10.
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2002: Negishi Manabu; Katoh Hironori
[Regulation of neurite formation by Rho family GTPases]
Seikagaku. The Journal of Japanese Biochemical Society 2002;74(5):395-8.
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2002: Katoh Hironori; Harada Amane; Mori Kazutoshi; Negishi Manabu
Socius is a novel Rnd GTPase-interacting protein involved in disassembly of actin stress fibers.
Molecular and cellular biology 2002;22(9):2952-64.
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2001: Yamaguchi Y; Katoh H; Yasui H; Mori K; Negishi M
RhoA inhibits the nerve growth factor-induced Rac1 activation through Rho-associated kinase-dependent pathway.
The Journal of biological chemistry 2001;276(22):18977-83.
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2001: Yasui H; Katoh H; Yamaguchi Y; Aoki J; Fujita H; Mori K; Negishi M
Differential responses to nerve growth factor and epidermal growth factor in neurite outgrowth of PC12 cells are determined by Rac1 activation systems.
The Journal of biological chemistry 2001;276(18):15298-305.
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2001: Nakamura K; Li Y Q; Kaneko T; Katoh H; Negishi M
Prostaglandin EP3 receptor protein in serotonin and catecholamine cell groups: a double immunofluorescence study in the rat brain.
Neuroscience 2001;103(3):763-75.
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2000: Aoki J; Katoh H; Mori K; Negishi M
Rnd1, a novel rho family GTPase, induces the formation of neuritic processes in PC12 cells.
Biochemical and biophysical research communications 2000;278(3):604-8.
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2000: Katoh H; Yasui H; Yamaguchi Y; Aoki J; Fujita H; Mori K; Negishi M
Small GTPase RhoG is a key regulator for neurite outgrowth in PC12 cells.
Molecular and cellular biology 2000;20(19):7378-87.
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2000: Hasegawa H; Katoh H; Fujita H; Mori K; Negishi M
Receptor isoform-specific interaction of prostaglandin EP3 receptor with muskelin.
Biochemical and biophysical research communications 2000;276(1):350-4.
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2000: Yamaguchi Y; Katoh H; Yasui H; Aoki J; Nakamura K; Negishi M
Galpha(12) and galpha(13) inhibit Ca(2+)-dependent exocytosis through Rho/Rho-associated kinase-dependent pathway.
Journal of neurochemistry 2000;75(2):708-17.
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2000: Nakamura K; Kaneko T; Yamashita Y; Hasegawa H; Katoh H; Negishi M
Immunohistochemical localization of prostaglandin EP3 receptor in the rat nervous system.
The Journal of comparative neurology 2000;421(4):543-69.
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2000: Hasegawa H; Katoh H; Yamaguchi Y; Nakamura K; Futakawa S; Negishi M
Different membrane targeting of prostaglandin EP3 receptor isoforms dependent on their carboxy-terminal tail structures.
FEBS letters 2000;473(1):76-80.
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2000: Fujita H; Katoh H; Hasegawa H; Yasui H; Aoki J; Yamaguchi Y; Negishi M
Molecular decipherment of Rho effector pathways regulating tight-junction permeability.
The Biochemical journal 2000;346 Pt 3():617-22.
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1999: Hasegawa H; Fujita H; Katoh H; Aoki J; Nakamura K; Ichikawa A; Negishi M
Opposite regulation of transepithelial electrical resistance and paracellular permeability by Rho in Madin-Darby canine kidney cells.
The Journal of biological chemistry 1999;274(30):20982-8.
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1999: Aoki J; Katoh H; Yasui H; Yamaguchi Y; Nakamura K; Hasegawa H; Ichikawa A; Negishi M
Signal transduction pathway regulating prostaglandin EP3 receptor-induced neurite retraction: requirement for two different tyrosine kinases.
The Biochemical journal 1999;340 ( Pt 2)():365-9.
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1999: Satoh S; Chang C s; Katoh H; Hasegawa H; Nakamura K; Aoki J; Fujita H; Ichikawa A; Negishi M
The key amino acid residue of prostaglandin EP3 receptor for governing G protein association and activation steps.
Biochemical and biophysical research communications 1999;255(1):164-8.
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1999: Nakamura K; Kaneko T; Yamashita Y; Hasegawa H; Katoh H; Ichikawa A; Negishi M
Immunocytochemical localization of prostaglandin EP3 receptor in the rat hypothalamus.
Neuroscience letters 1999;260(2):117-20.
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1998: Katoh H; Aoki J; Yamaguchi Y; Kitano Y; Ichikawa A; Negishi M
Constitutively active Galpha12, Galpha13, and Galphaq induce Rho-dependent neurite retraction through different signaling pathways.
The Journal of biological chemistry 1998;273(44):28700-7.
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1998: Nakamura K; Katoh H; Ichikawa A; Negishi M
Inhibition of dopamine release by prostaglandin EP3 receptor via pertussis toxin-sensitive and -insensitive pathways in PC12 cells.
Journal of neurochemistry 1998;71(2):646-52.
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1998: Katoh H; Aoki J; Ichikawa A; Negishi M
p160 RhoA-binding kinase ROKalpha induces neurite retraction.
The Journal of biological chemistry 1998;273(5):2489-92.
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1997: Hizaki H; Hasegawa H; Katoh H; Negishi M; Ichikawa A
Functional role of carboxyl-terminal tail of prostaglandin EP3 receptor in Gi coupling.
FEBS letters 1997;414(2):323-6.
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1997: Hasegawa H; Negishi M; Katoh H; Ichikawa A
Two isoforms of prostaglandin EP3 receptor exhibiting constitutive activity and agonist-dependent activity in Rho-mediated stress fiber formation.
Biochemical and biophysical research communications 1997;234(3):631-6.
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1996: Katoh H; Negishi M; Ichikawa A
Prostaglandin E receptor EP3 subtype induces neurite retraction via small GTPase Rho.
The Journal of biological chemistry 1996;271(47):29780-4.
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1995: Katoh H; Watabe A; Sugimoto Y; Ichikawa A; Negishi M
Characterization of the signal transduction of prostaglandin E receptor EP1 subtype in cDNA-transfected Chinese hamster ovary cells.
Biochimica et biophysica acta 1995;1244(1):41-8.
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