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Toshinori Hoshi

Affiliations: 
University of Pennsylvania, Philadelphia, PA, United States 
Area:
Ion channels, Oxidative regulation
Website:
http://www.med.upenn.edu/ins/faculty/hoshi.htm
Google:
"Toshinori Hoshi"
Mean distance: 13.97 (cluster 11)
 
SNBCP
Cross-listing: Chemistry Tree

Children

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Florian Ullrich research assistant 2011-2011 Penn
Terry Dean grad student Penn
Lindsey C. Santarelli grad student 2005 Penn
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Publications

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Gessner G, Rühl P, Westerhausen M, et al. (2020) Fe-Mediated Activation of BK Channels by Rapid Photolysis of CORM-S1 Releasing CO and Fe. Acs Chemical Biology
Coburger I, Yang K, Bernert A, et al. (2020) Impact of intracellular hemin on N-type inactivation of voltage-gated K channels. Pflugers Archiv : European Journal of Physiology
Tian Y, Heinemann SH, Hoshi T. (2019) Large-conductance Ca- and voltage-gated K channels form and break interactions with membrane lipids during each gating cycle. Proceedings of the National Academy of Sciences of the United States of America
Yang K, Coburger I, Langner JM, et al. (2018) Modulation of K channel N-type inactivation by sulfhydration through hydrogen sulfide and polysulfides. Pflugers Archiv : European Journal of Physiology
Gessner G, Sahoo N, Swain SM, et al. (2017) CO-independent modification of K(+) channels by tricarbonyldichlororuthenium(II) dimer (CORM-2). European Journal of Pharmacology
Ojha NK, Leipold E, Schönherr R, et al. (2017) Non-photonic sensing of membrane-delimited reactive species with a Na(+) channel protein containing selenocysteine. Scientific Reports. 7: 46003
Tian Y, Aursnes M, Hansen TV, et al. (2016) Atomic determinants of BK channel activation by polyunsaturated fatty acids. Proceedings of the National Academy of Sciences of the United States of America
Hoshi T, Heinemann SH. (2016) Modulation of BK Channels by Small Endogenous Molecules and Pharmaceutical Channel Openers. International Review of Neurobiology. 128: 193-237
Han B, He K, Cai C, et al. (2016) Human EAG channels are directly modulated by PIP2 as revealed by electrophysiological and optical interference investigations. Scientific Reports. 6: 23417
Schink M, Leipold E, Schirmeyer J, et al. (2015) Reactive species modify NaV1.8 channels and affect action potentials in murine dorsal root ganglion neurons. Pflugers Archiv : European Journal of Physiology
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