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Proceedings of the National Academy of Sciences of the United States of America|May 15, 2023
A self-inactivating invertebrate opsin optically drives biased signaling toward Gβγ-dependent ion channel modulationHisao Tsukamoto, Yoshihiro KuboBiophysical Reviews|February 14, 2020
Session 2SFA-the symposium "Elucidation of biological functions by optical control" on BSJ2019 at Miyazaki, JapanHisao Tsukamoto, Yoshinori ShichidaPhotochemical & Photobiological Sciences : Official Journal of the European Photochemistry Association and the European Society for Photobiology|September 21, 2010
Diversity and functional properties of bistable pigmentsHisao Tsukamoto, Akihisa TerakitaAdvances in Experimental Medicine and Biology|January 5, 2021
Optogenetic Modulation of Ion Channels by Photoreceptive ProteinsHisao Tsukamoto, Yuji FurutaniThe Journal of Biological Chemistry|August 14, 2013
A constitutively activating mutation alters the dynamics and energetics of a key conformational change in a ligand-free G protein-coupled receptorHisao Tsukamoto, David L FarrensProceedings of the National Academy of Sciences of the United States of America|April 27, 2005
A rhodopsin exhibiting binding ability to agonist all-trans-retinalHisao Tsukamoto, Akihisa Terakita, Yoshinori ShichidaThe Journal of Biological Chemistry|January 8, 2010
A pivot between helices V and VI near the retinal-binding site is necessary for activation in rhodopsinsHisao Tsukamoto, Akihisa Terakita, Yoshinori ShichidaJournal of Comparative Physiology. A, Neuroethology, Sensory, Neural, and Behavioral Physiology|December 5, 2009
Identification and characterization of a protostome homologue of peropsin from a jumping spiderTakashi Nagata, Mitsumasa Koyanagi, Hisao Tsukamoto, et al.The Journal of Biological Chemistry|June 6, 2009
The magnitude of the light-induced conformational change in different rhodopsins correlates with their ability to activate G proteinsHisao Tsukamoto, David L Farrens, Mitsumasa Koyanagi, et al.The Journal of Biological Chemistry|June 18, 2017
A ciliary opsin in the brain of a marine annelid zooplankton is ultraviolet-sensitive, and the sensitivity is tuned by a single amino acid residueHisao Tsukamoto, I-Shan Chen, Yoshihiro Kubo, et al.Pageof 4