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Existence of two O-like intermediates in the photocycle of Acetabularia rhodopsin II a light-driven proton pump from a marine alga

机译:Acetabularia rhodopsin II(一种来自海洋藻类的光驱动质子泵)的光循环中存在两种类似O的中间体

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摘要

A spectrally silent change is often observed in the photocycle of microbial rhodopsins. Here, we suggest the presence of two O intermediates in the photocycle of Acetabularia rhodopsin II (ARII or also called Ace2), a light-driven algal proton pump from Acetabularia acetabulum. ARII exhibits a photocycle including a quasi-equilibrium state of M, N, and O (M⇄N⇄O→) at near neutral and above pH values. However, acidification of the medium below pH ~5.5 causes no accumulation of N, resulting in that the photocycle of ARII can be described as an irreversible scheme (M→O→). This may facilitate the investigation of the latter part of the photocycle, especially the rise and decay of O, during which molecular events have not been sufficiently understood. Thus we analyzed the photocycle under acidic conditions (pH ≤ 5.5). Analysis of the absorbance change at 610 nm, which mainly monitors the fractional concentration changes of K and O, was performed and revealed a photocycle scheme containing two sequential O-states with the different molar extinction coefficients. These photoproducts, termed O1 and O2, may be even produced at physiological pH, although they are not clearly observed under this condition due to the existence of a long M-N-O equilibrium.
机译:在微生物视紫红质的光周期中经常观察到光谱上的无声变化。在这里,我们建议在Acetabularia rhodopsin II(ARII或也称为Ace2)的光周期中存在两个O中间体,这是一种来自Acetabularia acetabulum的光驱动藻质子泵。在接近中性和高于pH值的情况下,ARII表现出包括M,N和O的准平衡态(M = N = O→)的光循环。但是,pH值低于5.5的介质酸化不会导致N的积累,从而导致ARII的光循环可以描述为不可逆方案(M→O→)。这可能有助于研究光循环的后半部分,特别是O的上升和衰减,在此期间尚未充分了解分子事件。因此,我们在酸性条件下(pH≤5.5)分析了光循环。进行了主要监测K和O浓度变化的610 nm处吸光度变化的分析,并揭示了一个光循环方案,该方案包含两个具有不同摩尔消光系数的连续O状态。这些光产物O1和O2甚至可以在生理pH下产生,尽管由于存在长的M-N-O平衡而在这种条件下无法清楚观察到。

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