Akiyuki Taruno

Affiliations: 
Kyoto Prefectural University of Medicine, Kyōto-shi, Kyōto-fu, Japan 
Area:
Taste, Ion Channels
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"Akiyuki Taruno"
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Publications

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Matsuo M, Seo K, Taruno A, et al. (2022) A light-induced small G-protein gem limits the circadian clock phase-shift magnitude by inhibiting voltage-dependent calcium channels. Cell Reports. 39: 110844
Okui M, Murakami T, Sun H, et al. (2021) Posttranslational regulation of CALHM1/3 channel: N-linked glycosylation and S-palmitoylation. Faseb Journal : Official Publication of the Federation of American Societies For Experimental Biology. 35: e21527
Taruno A, Nomura K, Kusakizako T, et al. (2020) Taste transduction and channel synapses in taste buds. Pflugers Archiv : European Journal of Physiology
Demura K, Kusakizako T, Shihoya W, et al. (2020) Cryo-EM structures of calcium homeostasis modulator channels in diverse oligomeric assemblies. Science Advances. 6: eaba8105
Nomura K, Nakanishi M, Ishidate F, et al. (2020) All-Electrical Ca-Independent Signal Transduction Mediates Attractive Sodium Taste in Taste Buds. Neuron. 106: 816-829.e6
Kashio M, Wei-Qi G, Ohsaki Y, et al. (2019) CALHM1/CALHM3 channel is intrinsically sorted to the basolateral membrane of epithelial cells including taste cells. Scientific Reports. 9: 2681
Marunaka R, Taruno A, Yamamoto T, et al. (2018) Action of Protein Tyrosine Kinase Inhibitors on the Hypotonicity-Stimulated Trafficking Kinetics of Epithelial Na+ Channels (ENaC) in Renal Epithelial Cells: Analysis Using a Mathematical Model. Cellular Physiology and Biochemistry : International Journal of Experimental Cellular Physiology, Biochemistry, and Pharmacology. 50: 363-377
Ma Z, Taruno A, Ohmoto M, et al. (2018) CALHM3 Is Essential for Rapid Ion Channel-Mediated Purinergic Neurotransmission of GPCR-Mediated Tastes. Neuron
Taruno A. (2018) ATP Release Channels. International Journal of Molecular Sciences. 19
Nomura T, Taruno A, Shiraishi M, et al. (2017) Current-direction/amplitude-dependent single channel gating kinetics of mouse pannexin 1 channel: a new concept for gating kinetics. Scientific Reports. 7: 10512
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