Shigeta Arisu, Otani Yuto, Miyasa Ryota, Makino Yoshiteru, Kawamura Izuru, Okitsu Takashi, Wada Akimori, Naito Akira
Graduate School of Engineering, Yokohama National University, 79-5 Tokiwadai, Hodogaya-ku, Yokohama 240-8501, Japan.
Laboratory of Organic Chemistry for Life Science, Kobe Pharmaceutical University, 4-19-1 Motoyamakitamachi, Higashinada-ku, Kobe 658-8558, Japan.
Membranes (Basel). 2022 Feb 28;12(3):279. doi: 10.3390/membranes12030279.
Bacteriorhodopsin (BR) functions as a light-driven proton pump that transitions between different states during the photocycle, such as (AT; BR568) and 13-, 15- (CS; BR548) state and K, L, M, M, N, and O intermediates. In this study, we used in situ photoirradiation C solid-state NMR to observe a variety of photo-intermediates and photoreaction pathways in [20-C]retinal-WT-BR and its mutant [20-C, 14-C]retinal-D96N-BR. In WT-BR, the CS state converted to the CS* intermediate under photoirradiation with green light at -20 °C and consequently converted to the AT state in the dark. The AT state converted to the N intermediate under irradiation with green light. In D96N-BR, the CS state was converted to the CS* intermediate at -30 °C and consequently converted to the AT state. Simultaneously, the AT state converted to the M and L intermediates under green light illumination at -30 °C and subsequently converted to the AT state in the dark. The M intermediate was directly excited to the AT state by UV light illumination. We demonstrated that short-lived photo-intermediates could be observed in a stationary state using in situ photoirradiation solid-state NMR spectroscopy for WT-BR and D96N-BR, enabling insight into the light-driven proton pump activity of BR.
细菌视紫红质(BR)作为一种光驱动质子泵,在光循环过程中会在不同状态之间转换,例如(AT;BR568)和13-、15-(CS;BR548)状态以及K、L、M、M、N和O中间体。在本研究中,我们使用原位光照射碳固态核磁共振来观察[20-C]视黄醛-WT-BR及其突变体[20-C,14-C]视黄醛-D96N-BR中的各种光中间体和光反应途径。在WT-BR中,CS状态在-20°C下用绿光光照射时转变为CS中间体,并因此在黑暗中转变为AT状态。AT状态在绿光照射下转变为N中间体。在D96N-BR中,CS状态在-30°C时转变为CS中间体,并因此转变为AT状态。同时,AT状态在-30°C的绿光照射下转变为M和L中间体,并随后在黑暗中转变为AT状态。M中间体通过紫外光照射直接激发为AT状态。我们证明,使用原位光照射固态核磁共振光谱法可以在稳态下观察到WT-BR和D96N-BR中的短寿命光中间体,从而深入了解BR的光驱动质子泵活性。