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Accounts of Chemical Research|November 7, 2024
Origin of the Difference in Proton Transport Direction between Inward and Outward Proton-Pumping RhodopsinsTaito Urui, Yasuhisa MizutaniThe Journal of Physical Chemistry. B|June 25, 2026
Photothermal Conversion and Temperature Elevation by a Minimal Heme ProteinShima Ooto, Haruto Ishikawa, Taito Urui, et al.The Journal of Physical Chemistry. B|October 25, 2022
Origin of a Double-Band Feature in the Ethylenic C═C Stretching Modes of the Retinal Chromophore in HeliorhodopsinsTaito Urui, Ishita Das, Misao Mizuno, et al.The Journal of Physical Chemistry. B|June 25, 2021
Resonance Raman Determination of Chromophore Structures of Heliorhodopsin PhotointermediatesTaito Urui, Misao Mizuno, Akihiro Otomo, et al.The Journal of Physical Chemistry. B|December 17, 2024
Structural Evolution of Retinal Chromophore in Early Intermediates of Inward and Outward Proton-Pumping RhodopsinsTaito Urui, Misao Mizuno, Rei Abe-Yoshizumi, et al.The Journal of Physical Chemistry. B|March 4, 2024
Chromophore-Protein Interactions Affecting the Polyene Twist and π-π* Energy Gap of the Retinal Chromophore in SchizorhodopsinsTaito Urui, Tomomi Shionoya, Misao Mizuno, et al.The Journal of Physical Chemistry. B|January 11, 2024
Cis-Trans Reisomerization Preceding Reprotonation of the Retinal Chromophore Is Common to the Schizorhodopsin Family: A Simple and Rational Mechanism for Inward Proton PumpingTaito Urui, Kouhei Hayashi, Misao Mizuno, et al.The Journal of Physical Chemistry. B|August 2, 2024
Unusual Vibrational Coupling of the Schiff Base in the Retinal Chromophore of Sodium Ion-Pumping RhodopsinsTaiki Nakamura, Yuka Shinozaki, Akihiro Otomo, et al.Pageof 1