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视紫红质的结构与功能:视紫红质胞质环中的肽序列与视紫红质激酶的相互作用密切相关。

Structure and function in rhodopsin: peptide sequences in the cytoplasmic loops of rhodopsin are intimately involved in interaction with rhodopsin kinase.

作者信息

Thurmond R L, Creuzenet C, Reeves P J, Khorana H G

机构信息

Department of Biology, Massachusetts Institute of Technology, Cambridge 02139, USA.

出版信息

Proc Natl Acad Sci U S A. 1997 Mar 4;94(5):1715-20. doi: 10.1073/pnas.94.5.1715.

Abstract

Phosphorylation of light-activated rhodopsin by the retina-specific enzyme, rhodopsin kinase (RK), is the primary event in the initiation of desensitization in the visual system. RK binds to the cytoplasmic face of rhodopsin, and the binding results in activation of the enzyme which then phosphorylates rhodopsin at several serine and threonine residues near the carboxyl terminus. To map the RK binding sites, we prepared two sets of rhodopsin mutants in the cytoplasmic CD and EF loops. In the first set, peptide sequences in both loops were either deleted or replaced by indifferent sequences. In the second set of mutants, the charged amino acids (E134, R135, R147, E239, K245, E247, K248, and E249) were replaced by neutral amino acids in groups of 1-3 per mutant. The deletion and replacement mutants in the CD loop showed essentially no phosphorylation, and they appeared to be defective in binding of RK. Of the mutants in the EF loop, that with a deletion of 13 amino acids, was also defective in binding to RK while the second mutant containing a replacement sequence bound RK but showed a reduction of about 70% in Vmax for phosphorylation. The mutants containing charged to neutral amino acid replacements in the CD and EF loops were all phosphorylated but to different levels. The charge reversal mutant E134R/R135E showed a 50% reduction in Vmax relative to wild-type rhodopsin. Replacements of charged residues in the EF loop decreased the Km by 5-fold for E239Q and E247Q/K248L/E239Q. In summary, both the CD and EF cytoplasmic loops are intimately involved in binding and interaction of RK with light-activated rhodopsin.

摘要

视网膜特异性酶视紫红质激酶(RK)对光激活视紫红质的磷酸化是视觉系统脱敏起始的主要事件。RK与视紫红质的胞质面结合,这种结合导致该酶激活,然后RK在羧基末端附近的几个丝氨酸和苏氨酸残基处对视紫红质进行磷酸化。为了绘制RK结合位点,我们在胞质CD环和EF环中制备了两组视紫红质突变体。在第一组中,两个环中的肽序列要么被删除,要么被无关序列取代。在第二组突变体中,带电荷的氨基酸(E134、R135、R147、E239、K245、E247、K248和E249)被中性氨基酸取代,每个突变体每次取代1 - 3个。CD环中的缺失和取代突变体基本上没有磷酸化,并且它们在RK结合方面似乎存在缺陷。在EF环的突变体中,缺失13个氨基酸的那个在与RK结合方面也有缺陷,而含有取代序列的第二个突变体能够结合RK,但磷酸化的Vmax降低了约70%。在CD环和EF环中含有带电荷氨基酸被中性氨基酸取代的突变体都被磷酸化,但程度不同。电荷反转突变体E134R/R135E相对于野生型视紫红质的Vmax降低了50%。EF环中带电荷残基的取代使E239Q和E247Q/K248L/E239Q的Km降低了5倍。总之,胞质CD环和EF环都密切参与RK与光激活视紫红质的结合和相互作用。

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