Magnetic resonance studies of the bacteriorhodopsin pump cycle

被引:79
作者
Herzfeld, J [1 ]
Lansing, JC
机构
[1] Brandeis Univ, Dept Chem, Waltham, MA 02454 USA
[2] Brandeis Univ, Keck Inst Cellular Visualizat, Waltham, MA 02454 USA
[3] MIT, Francis Bitter Natl Magnet Lab, Dept Chem, Cambridge, MA 02139 USA
[4] MIT, Francis Bitter Natl Magnet Lab, Ctr Magnet Resonance, Cambridge, MA 02139 USA
来源
ANNUAL REVIEW OF BIOPHYSICS AND BIOMOLECULAR STRUCTURE | 2002年 / 31卷
关键词
photocycle; proton transport; anion pump; hydroxide pump; connectivity switch; torsion;
D O I
10.1146/annurev.biophys.31.082901.134233
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Active transport requires the alternation of substrate uptake and release with a switch in the access of the substrate binding site to the two sides of the membrane. Both the transfer and switch aspects of the photocycle have been subjects of magnetic resonance studies in bacteriorhodopsin. The results for ion transfer indicate that the Schiff base of the chromophore is hydrogen bonded before, during, and after its deprotonation. This suggests that the initial complex counterion of the Schiff base decomposes in such a way that the Schiff base carries its immediate hydrogen-bonding partner with it as it rotates during the first half of the photocycle. If so, bacteriorhodopsin acts as an inward-directed hydroxide pump rather than as an outward-directed proton pump. The studies of the access switch explore both protein-based and chromophore-based mechanisms. Combined with evidence from functional studies of mutants and other forms of spectroscopy, the results suggest that maintaining access to the extracellular side of the protein after photoisomerization involves twisting of the chromophore and that the decisive switch in access to the cytoplasmic side results from relaxation of the chromophore when the constraints on the Schiff base are released by decomposition of the complex counterion.
引用
收藏
页码:73 / 95
页数:25
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