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Biochemistry|August 10, 2005
Formation of a long-lived photoproduct with a deprotonated Schiff base in proteorhodopsin, and its enhancement by mutation of Asp227Eleonora S Imasheva, Kazumi Shimono, Sergei P Balashov, et al.
Scientific Reports|July 26, 2019
Functional importance of the oligomer formation of the cyanobacterial H<sup>+</sup> pump Gloeobacter rhodopsinAzusa Iizuka, Kousuke Kajimoto, Tomotsumi Fujisawa, et al.
Biophysics and Physicobiology|June 1, 2017
Existence of two O-like intermediates in the photocycle of <i>Acetabularia</i> rhodopsin II, a light-driven proton pump from a marine algaJun Tamogami, Takashi Kikukawa, Toshifumi Nara, et al.
Biophysical Journal|November 22, 2011
An active photoreceptor intermediate revealed by in situ photoirradiated solid-state NMR spectroscopyYuya Tomonaga, Tetsurou Hidaka, Izuru Kawamura, et al.
Nucleic Acids Research|October 30, 2020
Acetylation-modulated communication between the H3 N-terminal tail domain and the intrinsically disordered H1 C-terminal domainFanfan Hao, Kevin J Murphy, Tomoya Kujirai, et al.
Biochemistry|September 13, 2011
Photochemistry of Acetabularia rhodopsin II from a marine plant, Acetabularia acetabulumTakashi Kikukawa, Kazumi Shimono, Jun Tamogami, et al.
Journal of Photochemistry and Photobiology. B, Biology|April 24, 2018
Interhelical interactions between D92 and C218 in the cytoplasmic domain regulate proton uptake upon N-decay in the proton transport of Acetabularia rhodopsin IIJun Tamogami, Takashi Kikukawa, Keisuke Ohkawa, et al.
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