Michael A. Kienzler

Affiliations: 
2010 Chemistry University of California, Berkeley, Berkeley, CA, United States 
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"Michael Kienzler"
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Dirk Trauner grad student 2010 UC Berkeley
 (I. Total synthesis of smenochromene B and halenaquinone and II. Studies on the chemical and biological properties of azobenzene photoswitches.)
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Publications

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Udasin R, Sil A, Zomot E, et al. (2022) Photopharmacological modulation of native CRAC channels using azoboronate photoswitches. Proceedings of the National Academy of Sciences of the United States of America. 119: e2118160119
Carmi I, De Battista M, Maddalena L, et al. (2019) Holographic two-photon activation for synthetic optogenetics. Nature Protocols. 14: 864-900
Kienzler MA, Isacoff EY. (2017) Precise modulation of neuronal activity with synthetic photoswitchable ligands. Current Opinion in Neurobiology
Mourot A, Herold C, Kienzler MA, et al. (2017) Understanding and improving photo-control of ion channels in nociceptors with azobenzene photoswitches. British Journal of Pharmacology
Morita T, McClain SP, Batia LM, et al. (2015) HTR7 Mediates Serotonergic Acute and Chronic Itch. Neuron
Carroll EC, Berlin S, Levitz J, et al. (2015) Two-photon brightness of azobenzene photoswitches designed for glutamate receptor optogenetics. Proceedings of the National Academy of Sciences of the United States of America. 112: E776-85
Berlin S, Szobota S, Reiner A, et al. (2015) Author response: A family of photoswitchable NMDA receptors Elife
Comoglio Y, Joshua L, Kienzler M, et al. (2015) Phospholipase D2 Specifically Regulates TREK Channels via Direct Interaction and Local Production of Phosphatidic Acid Biophysical Journal. 108
Gaub BM, Berry MH, Holt AE, et al. (2014) Restoration of visual function by expression of a light-gated mammalian ion channel in retinal ganglion cells or ON-bipolar cells. Proceedings of the National Academy of Sciences of the United States of America. 111: E5574-83
Comoglio Y, Levitz J, Kienzler MA, et al. (2014) Phospholipase D2 specifically regulates TREK potassium channels via direct interaction and local production of phosphatidic acid. Proceedings of the National Academy of Sciences of the United States of America. 111: 13547-52
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