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含羟基氨基酸在差异调节人红色和绿色视锥色素吸收光谱中的作用。

Role of hydroxyl-bearing amino acids in differentially tuning the absorption spectra of the human red and green cone pigments.

作者信息

Merbs S L, Nathans J

机构信息

Department of Molecular Biology and Genetics, Johns Hopkins University School of Medicine, Baltimore, MD 21205.

出版信息

Photochem Photobiol. 1993 Nov;58(5):706-10. doi: 10.1111/j.1751-1097.1993.tb04956.x.

Abstract

The human red and green cone pigments differ at either 15 or 16 amino acids, depending upon which polymorphic variants are compared. Seven of these amino acid differences involve the introduction or removal of a hydroxyl group. One of these differences, a substitution of alanine for serine at position 180, was found previously to produce a 5 nm blue shift. To determine the role of the remaining six hydroxyl group differences in tuning the absorption spectra of the human red and green pigments, we have studied six site-directed mutants in which single amino acids from the green pigment have been substituted for the corresponding residues in the red pigment. Blue shifts of 7 and 14 nm were observed upon substitution of phenylalanine for tyrosine at position 277 and alanine for threonine at position 285, respectively. Single substitutions at positions 65, 230, 233, and 309 produced spectral shifts of 1 nm or less. These data are in good agreement with a model based upon sequence comparisons among primate pigments and with the properties of site-directed mutants of bovine rhodopsin. Nonadditive effects observed in comparing the absorption spectra of red-green hybrid pigments remain to be explained.

摘要

根据所比较的多态变体不同,人类红色和绿色视锥色素在15或16个氨基酸处存在差异。这些氨基酸差异中有7处涉及羟基的引入或去除。其中一个差异,即在第180位由丝氨酸替换为丙氨酸,先前已发现会产生5纳米的蓝移。为了确定其余6处羟基差异在调节人类红色和绿色色素吸收光谱中的作用,我们研究了6个定点突变体,其中绿色色素中的单个氨基酸已被红色色素中的相应残基所取代。分别在第277位由苯丙氨酸替换酪氨酸以及在第285位由丙氨酸替换苏氨酸时,观察到了7纳米和14纳米的蓝移。在第65、230、233和309位的单取代产生的光谱位移为1纳米或更小。这些数据与基于灵长类色素序列比较的模型以及牛视紫红质定点突变体的特性高度一致。在比较红绿混合色素吸收光谱时观察到的非加性效应仍有待解释。

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