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恢复蛋白作为一种氧化还原敏感蛋白。

Recoverin as a redox-sensitive protein.

作者信息

Permyakov Sergei E, Nazipova Aliya A, Denesyuk Alexander I, Bakunts Anush G, Zinchenko Dmitry V, Lipkin Valery M, Uversky Vladimir N, Permyakov Eugene A

机构信息

Institute for Biological Instrumentation of the Russian Academy of Sciences, Pushchino, Moscow Region 142290, Russia.

出版信息

J Proteome Res. 2007 May;6(5):1855-63. doi: 10.1021/pr070015x. Epub 2007 Mar 27.

Abstract

Recoverin is a member of the neuronal calcium sensor (NCS) family of EF-hand calcium binding proteins. In a visual cycle of photoreceptor cells, recoverin regulates activity of rhodopsin kinase in a Ca2+-dependent manner. Like all members of the NSC family, recoverin contains a conserved cysteine (Cys38) in nonfunctional EF-hand 1. This residue was shown to be critical for activation of target proteins in some members of the NCS family but not for interaction of recoverin with rhodopsin kinase. Spectrophotometric titration of Ca2+-loaded recoverin gave 7.6 for the pKa value of Cys38 thiol, suggesting partial deprotonation of the thiol in vivo conditions. An ability of recoverin to form a disulfide dimer and thiol-oxidized monomer under mild oxidizing conditions was found using SDS-PAGE in reducing and nonreducing conditions and Ellman's test. Both processes are reversible and modulated by Ca2+. Although formation of the disulfide dimer takes place only for Ca2+-loaded recoverin, accumulation of the oxidized monomer proceeds more effectively for apo-recoverin. The Ca2+ modulated susceptibility of the recoverin thiol to reversible oxidation may be of potential importance for functioning of recoverin in photoreceptor cells.

摘要

恢复蛋白是EF手型钙结合蛋白的神经元钙传感器(NCS)家族的成员。在光感受器细胞的视觉循环中,恢复蛋白以Ca2+依赖的方式调节视紫红质激酶的活性。与NSC家族的所有成员一样,恢复蛋白在无功能的EF手型1中含有一个保守的半胱氨酸(Cys38)。已表明该残基对NCS家族某些成员中靶蛋白的激活至关重要,但对恢复蛋白与视紫红质激酶的相互作用并不重要。对加载Ca2+的恢复蛋白进行分光光度滴定,得到Cys38硫醇的pKa值为7.6,表明在体内条件下硫醇部分去质子化。使用SDS-PAGE在还原和非还原条件下以及埃尔曼测试,发现在温和氧化条件下恢复蛋白具有形成二硫键二聚体和硫醇氧化单体的能力。这两个过程都是可逆的,并受Ca2+调节。虽然二硫键二聚体仅在加载Ca2+的恢复蛋白中形成,但氧化单体的积累在脱辅基恢复蛋白中进行得更有效。恢复蛋白硫醇对可逆氧化的Ca2+调节敏感性可能对恢复蛋白在光感受器细胞中的功能具有潜在重要性。

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