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自旋标记细菌视紫红质光循环过程中结构变化的时间分辨检测。

Time-resolved detection of structural changes during the photocycle of spin-labeled bacteriorhodopsin.

作者信息

Steinhoff H J, Mollaaghababa R, Altenbach C, Hideg K, Krebs M, Khorana H G, Hubbell W L

机构信息

Institut für Biophysik, Ruhr-Universität Bochum, Germany.

出版信息

Science. 1994 Oct 7;266(5182):105-7. doi: 10.1126/science.7939627.

Abstract

Bacteriorhodopsin was selectively spin labeled at residues 72, 101, or 105 after replacement of the native amino acids by cysteine. Only the electron paramagnetic resonance spectrum of the label at 101 was time-dependent during the photocycle. The spectral change rose with the decay of the M intermediate and fell with recovery of the ground state. The transient signal is interpreted as the result of movement in the C-D or E-F interhelical loop, or in both, coincident with protonation changes at the key aspartate 96 residue. These results link the optically characterized intermediates with localized conformational changes in bacteriorhodopsin during the photocycle.

摘要

在用半胱氨酸取代天然氨基酸后,细菌视紫红质在72、101或105位残基处被选择性地自旋标记。在光循环过程中,只有101位标记的电子顺磁共振谱是随时间变化的。光谱变化随着M中间体的衰减而上升,随着基态的恢复而下降。瞬态信号被解释为C-D或E-F螺旋间环或两者中运动的结果,这与关键的天冬氨酸96残基处的质子化变化同时发生。这些结果将光学表征的中间体与细菌视紫红质在光循环过程中的局部构象变化联系起来。

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