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时间分辨步进扫描傅里叶变换红外光谱揭示了细菌视紫红质早期和晚期M中间体之间的差异。

Time-resolved step-scan Fourier transform infrared spectroscopy reveals differences between early and late M intermediates of bacteriorhodopsin.

作者信息

Rödig C, Chizhov I, Weidlich O, Siebert F

机构信息

Institut für Biophysik und Strahlenbiologie der Universität Freiburg, 79104 Freiburg, Germany.

出版信息

Biophys J. 1999 May;76(5):2687-701. doi: 10.1016/S0006-3495(99)77421-7.

Abstract

In this report, from time-resolved step-scan Fourier transform infrared investigations from 15 ns to 160 ms, we provide evidence for the subsequent rise of three different M states that differ in their structures. The first state rises with approximately 3 microseconds to only a small percentage. Its structure as judged from amide I/II bands differs in small but well-defined aspects from the L state. The next M state, which appears in approximately 40 microseconds, has almost all of the characteristics of the "late" M state, i.e., it differs considerably from the first one. Here, the L left arrow over right arrow M equilibrium is shifted toward M, although some percentage of L still persists. In the last M state (rise time approximately 130 microseconds), the equilibrium is shifted toward full deprotonation of the Schiff base, and only small additional structural changes take place. In addition to these results obtained for unbuffered conditions or at pH 7, experiments performed at lower and higher pH are presented. These results are discussed in terms of the molecular changes postulated to occur in the M intermediate to allow the shift of the L/M equilibrium toward M and possibly to regulate the change of the accessibility of the Schiff base necessary for effective proton pumping.

摘要

在本报告中,通过从15纳秒至160毫秒的时间分辨步进扫描傅里叶变换红外研究,我们提供了证据,证明三种不同结构的M态会相继出现。第一种状态在大约3微秒内上升至仅一小部分。从酰胺I/II带判断,其结构与L态在细微但明确的方面有所不同。下一个M态大约在40微秒时出现,几乎具有“晚期”M态的所有特征,即与第一个M态有很大差异。在这里,L⇌M平衡向M移动,尽管仍有一定比例的L存在。在最后一个M态(上升时间约130微秒)中,平衡向席夫碱的完全去质子化方向移动,仅发生了少量额外的结构变化。除了在无缓冲条件下或pH为7时获得的这些结果外,还展示了在较低和较高pH下进行的实验。根据推测在M中间体中发生的分子变化对这些结果进行了讨论,这些变化使得L/M平衡向M移动,并可能调节有效质子泵浦所需的席夫碱可及性的变化。

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本文引用的文献

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