PROTEIN DYNAMICS IN THE BACTERIORHODOPSIN PHOTOCYCLE - SUBMILLISECOND FOURIER-TRANSFORM INFRARED-SPECTRA OF THE L-PHOTOINTERMEDIATES, M-PHOTOINTERMEDIATES, AND N-PHOTOINTERMEDIATES

被引:173
作者
BRAIMAN, MS
BOUSCHE, O
ROTHSCHILD, KJ
机构
[1] BOSTON UNIV,PROGRAM CELLULAR BIOPHYS,BOSTON,MA 02215
[2] BOSTON UNIV,DEPT PHYS,BOSTON,MA 02215
关键词
PURPLE MEMBRANE; ACTIVE TRANSPORT; ENERGY TRANSDUCTION; KINETIC;
D O I
10.1073/pnas.88.6.2388
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
The usefulness of stroboscopic time-resolved Fourier transform IR spectroscopy for studying the dynamics of biological systems is demonstrated. By using this technique, we have obtained broadband IR absorbance difference spectra after photolysis of bacteriorhodopsin with a time resolution of almost-equal-to 50-mu-s, spectral resolution of 4 cm-1, and a detection limit of DELTA-A less-than-or-equal-to 10(-4). These capabilities permit observation of detailed structural changes in individual residues as bacteriorhodopsin passes through its L, M, and N intermediate states near physiological temperatures. When combined with band assignments based on isotope labeling and site-directed mutagenesis, the stroboscopic Fourier transform IR difference spectra show that on the time scale of the L intermediate, Asp-96 has an altered environment that may be accompanied by change in its protonation state. On the time scale of the L --> M transition, this Asp-96 perturbation/deprotonation is largely reversed, and Asp-85 becomes protonated. During the M --> N transition, Asp-85 appears to remain protonated but undergoes a change in its environment as evidenced by a shift of nu-C = O from 1761 to 1755 cm-1. The retention of a proton on Asp-85 in the N state indicates that the proton transferred from the Schiff base to this residue in the L --> M step is not released to the extracellular medium during the same photocycle, but rather during a subsequent one. Also during the M --> N transition, Asp-96 undergoes a deprotonation (possibly for the second time in a single photocycle). Bands in the amide I and amide II spectral regions in the M --> N difference spectrum indicate the occurrence of a conformational change involving one or more peptide groups in the protein backbone.
引用
收藏
页码:2388 / 2392
页数:5
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