Takeshi Nakamura

Affiliations: 
Kyoto University, Kyōto-shi, Kyōto-fu, Japan 
Area:
Neurite outgrowth
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"Takeshi Nakamura"
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Publications

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Koinuma S, Takeuchi K, Wada N, et al. (2017) cAMP-induced activation of protein kinase A and p190B RhoGAP mediates down-regulation of TC10 activity at the plasma membrane and neurite outgrowth. Genes to Cells : Devoted to Molecular & Cellular Mechanisms
Yasuda S, Morishita S, Fujita A, et al. (2015) Mon1-Ccz1 activates Rab7 only on late endosome and dissociates from lysosome in mammalian cells. Journal of Cell Science
Fujita A, Koinuma S, Yasuda S, et al. (2013) GTP hydrolysis of TC10 promotes neurite outgrowth through exocytic fusion of Rab11- and L1-containing vesicles by releasing exocyst component Exo70. Plos One. 8: e79689
Nagai H, Yasuda S, Ohba Y, et al. (2013) All members of the EPI64 subfamily of TBC/RabGAPs also have GAP activities towards Ras. Journal of Biochemistry. 153: 283-8
Goto A, Hoshino M, Matsuda M, et al. (2011) Phosphorylation of STEF/Tiam2 by protein kinase A is critical for Rac1 activation and neurite outgrowth in dibutyryl cAMP-treated PC12D cells. Molecular Biology of the Cell. 22: 1780-90
Kiyokawa E, Aoki K, Nakamura T, et al. (2011) Spatiotemporal regulation of small GTPases as revealed by probes based on the principle of Förster Resonance Energy Transfer (FRET): Implications for signaling and pharmacology. Annual Review of Pharmacology and Toxicology. 51: 337-58
Nakamura T, Matsuda M. (2009) In Vivo Imaging of Signal Transduction Cascades with Probes Based on Förster Resonance Energy Transfer (FRET) Current Protocols in Pharmacology. 45
Lu A, Tebar F, Alvarez-Moya B, et al. (2009) A clathrin-dependent pathway leads to KRas signaling on late endosomes en route to lysosomes Journal of Cell Biology. 184: 863-879
Nakamura T, Aoki K, Matsuda M. (2008) FRET imaging and in silico simulation: analysis of the signaling network of nerve growth factor-induced neuritogenesis. Brain Cell Biology. 36: 19-30
Kitano M, Nakaya M, Nakamura T, et al. (2008) Imaging of Rab5 activity identifies essential regulators for phagosome maturation. Nature. 453: 241-5
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