Trapping and Spectroscopic Identification of the Photointermediates of Bacteriorhodopsin at Low Temperatures

Light-driven transmembrane proton pumping by bacteriorhodopsin occurs in the photochemical cycle, which includes a number of spectroscopically identifiable intermediates. The development of methods to crystallize bacteriorhodopsin have allowed it to be studied with high-resolution X-ray diffraction,...

Full description

Saved in:
Bibliographic Details
Published inPhotochemistry and photobiology Vol. 73; no. 5; pp. 453 - 462
Main Authors Balashov, Sergei P., Ebrey, Thomas G.
Format Journal Article
LanguageEnglish
Published United States Blackwell Publishing Ltd 01.05.2001
Subjects
Online AccessGet full text

Cover

Loading…
More Information
Summary:Light-driven transmembrane proton pumping by bacteriorhodopsin occurs in the photochemical cycle, which includes a number of spectroscopically identifiable intermediates. The development of methods to crystallize bacteriorhodopsin have allowed it to be studied with high-resolution X-ray diffraction, opening the possibility to advance substantially our knowledge of the structure and mechanism of this light-driven proton pump. A key step is to obtain the structures of the intermediate states formed during the photocycle of bacteriorhodopsin. One difficulty in these studies is how to trap selectively the intermediates at low temperatures and determine quantitatively their amounts in a photosteady state. In this paper we review the procedures for trapping the K, L, M and N intermediates of the bacteriorhodopsin photocycle and describe the difference absorption spectra accompanying the transformation of the all-trans-bacteriorhodopsin into each intermediate. This provides the means for quantitative analysis of the light-induced mixtures of different intermediates produced by illumination of the pigment at low temperatures.
Bibliography:ObjectType-Article-2
SourceType-Scholarly Journals-1
ObjectType-Feature-3
content type line 23
ObjectType-Review-1
ISSN:0031-8655
1751-1097
DOI:10.1562/0031-8655(2001)073<0453:TASIOT>2.0.CO;2