College of Chemistry and Environmental Science, Inner Mongolia Normal University, Hohhot, 010018, China.
Division of Engineering, Muroran Institute of Technology, Muroran, 050-8585, Japan.
Photochem Photobiol. 2018 Jul;94(4):705-714. doi: 10.1111/php.12917. Epub 2018 Apr 23.
Aspartic acid 103 (D103) of sensory rhodopsin II from Halobacterium salinarum (HsSRII, or also called phoborhodopsin) corresponds to D115 of bacteriorhodopsin (BR). This amino acid residue is functionally important in BR. This work reveals that a substitution of D103 with asparagine (D103N) or glutamic acid (D103E) can cause large changes in HsSRII photocycle. These changes include (1) shortened lifetime of the M intermediate in the following order: the wild-type > D103N > D103E; (2) altered decay pathway of a 13-cis O-like species. The 13-cis O-like species, tentatively named Px, was detected in HsSRII photocycle. Px appeared to undergo branched reactions at 0°C, leading to a recovery of the unphotolyzed state and formation of a metastable intermediate, named P370, that slowly decayed to the unphotolyzed state at room temperature. In wild-type HsSRII at 0°C, Px mainly decayed to the unphotolyzed state, and the decay reaction toward P370 was negligible. In mutant D103E at 0°C, Px decayed to P370, while the recovery of the unphotolyzed state became unobservable. In mutant D103N, the two reactions proceeded at comparable rates. Thus, D103 of HsSRII may play an important role in regulation of the photocycle of HsSRII.
盐杆菌感受态视紫红质 II(HsSRII,也称为恐光视紫红质)中的天冬氨酸 103(D103)与菌视紫红质(BR)中的天冬氨酸 115 相对应。该氨基酸残基在 BR 中具有重要的功能。本工作表明,将 D103 突变为天冬酰胺(D103N)或谷氨酸(D103E)会导致 HsSRII 光循环发生很大变化。这些变化包括:(1)M 中间态的寿命缩短,顺序为:野生型> D103N> D103E;(2)13-顺式 O-类似物的衰减途径发生改变。在 HsSRII 光循环中检测到了 13-顺式 O-类似物,暂命名为 Px。Px 在 0°C 时似乎发生了支化反应,导致未光解状态的恢复和形成一种亚稳态中间产物 P370,P370 在室温下缓慢衰减至未光解状态。在 0°C 下的野生型 HsSRII 中,Px 主要衰减到未光解状态,而向 P370 的衰减反应可以忽略不计。在 0°C 下的突变体 D103E 中,Px 衰减到 P370,而未光解状态的恢复变得不可观察。在突变体 D103N 中,这两个反应以可比的速率进行。因此,HsSRII 的 D103 可能在 HsSRII 光循环的调节中发挥重要作用。