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首页> 外文期刊>Biochemistry >Role of arginine-82 in fast proton release during the bacteriorhodopsin photocycle: A time-resolved FT-IR study of purple membranes containing N-15-labeled arginine
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Role of arginine-82 in fast proton release during the bacteriorhodopsin photocycle: A time-resolved FT-IR study of purple membranes containing N-15-labeled arginine

机译:精氨酸82在细菌视紫红质光周期过程中快速质子释放中的作用:含N-15标记精氨酸的紫色膜的时间分辨FT-IR研究

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摘要

Arginine-82 has long been recognized as an important residue in bacteriorhodopsin (bR), because its mutation usually results in loss of fast H+ release, an important step in the normal light-induced H+ transport mechanism. To help to clarify the structural changes in Arg-82 associated with the H+-release step, we have measured time-resolved FT-IR difference spectra of wild-type bR containing either natural-abundance isotopes (N-14-Arg-bR) or all seven arginines selectively and uniformly labeled with N-15 at the two eta-nitrogens (N-15-Arg-bR). Comparison of the spectra from the two isotopic variants shows that a 1556 cm(-1) vibrational difference band due to the M photocycle intermediate of N-14-Arg-bR loses substantial intensity in N-15-Arg-bR. However, this isotope-sensitive arginine vibrational difference band is only observed at pH 7 and not at pH 4 where fast H+ release is blocked. These observations support the earlier conclusion, based on site-directed mutagenesis and chemical labeling, that a strong C-N stretch vibration of Arg-82 can be assigned to a highly perturbed frequency near 1555 cm(-1) in the M state of wild-type bR [Hutson et al. (2000) Biochemistry 39, 13189-13200]. Furthermore, alkylguanidine model compound spectra indicate that the unusually low arginine C-N stretch frequency in the M state is consistent with a nearly stoichiometric light-induced deprotonation of an arginine side chain within bR, presumably arginine-82.
机译:长期以来,人们一直认为精氨酸82是细菌视紫红质(bR)中的重要残基,因为其突变通常会导致快速H +释放丧失,这是正常光诱导的H +转运机制中的重要步骤。为了帮助阐明与H +释放步骤相关的Arg-82的结构变化,我们测量了含有自然丰度同位素(N-14-Arg-bR)的野生型bR的时间分辨FT-IR差异光谱或所有七个精氨酸在两个eta氮(N-15-Arg-bR)处选择性且均匀地标记有N-15。来自两个同位素变体的光谱比较表明,由于N-14-Arg-bR的M光循环中间体,导致1556 cm(-1)的振动差异带在N-15-Arg-bR中失去了明显的强度。但是,这种同位素敏感的精氨酸振动差异谱带仅在pH 7时观察到,而在pH 4时观察不到,在此条件下H +的快速释放被阻止。这些观察结果支持基于定点诱变和化学标记的较早结论,即在野生型M状态下,Arg-82的强大CN拉伸振动可分配给1555 cm(-1)附近的高扰动频率bR [Hutson等。 (2000)Biochemistry 39,13189-13200]。此外,烷基胍模型化合物光谱表明,在M状态下,精氨酸C-N的异常低的延伸频率与bR(大概是精氨酸82)内精氨酸侧链的接近化学计量的光诱导去质子化相一致。

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