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中心蛋白和酵母钙调蛋白与对应于纺锤极体组件Kar1p和Spc110p中结合位点的合成肽的结合。

Binding of centrins and yeast calmodulin to synthetic peptides corresponding to binding sites in the spindle pole body components Kar1p and Spc110p.

作者信息

Geier B M, Wiech H, Schiebel E

机构信息

Max-Planck-Institut für Biochemie, Genzentrum, Am Klopferspitz 18a, D-82152 Martinsried, Germany.

出版信息

J Biol Chem. 1996 Nov 8;271(45):28366-74. doi: 10.1074/jbc.271.45.28366.

Abstract

Centrins contain four potential Ca2+ binding sites, known as EF-hands, and have essential functions in centrosome duplication and filament contraction. Here we report that centrins from yeast, green algae, and humans bound with high affinity to a peptide of the yeast centrosomal component Kar1p. Interestingly, centrin binding was regulated by physiological relevant changes in [Ca2+], and this Ca2+ dependence was influenced by acidic amino acids within the Kar1p peptide, which also prevented efficient binding of the related yeast calmodulin. However, a hybrid protein with the third and fourth EF-hands from the yeast centrin Cdc31p and the amino-terminal half from yeast calmodulin behaved more like Cdc31p, indicating that the carboxyl-terminal half of Cdc31p influences binding specificity. Besides Kar1p, centrins bound to a yeast calmodulin binding site, explaining the dosage-dependent suppression of a calmodulin mutant by CDC31. Consistent with an essential role of Ca2+ for centrin functions, mutations in the first or the fourth EF-hands of Cdc31p, impairing the Ca2+-induced conformational change of Cdc31p, resulted in nonfunctional proteins in vivo. Our results suggest that centrins are involved in Ca2+ signaling, likely by influencing the properties of target proteins in response to changes in [Ca2+].

摘要

中心蛋白含有四个潜在的钙离子结合位点,即EF手结构域,在中心体复制和细丝收缩中发挥着重要作用。在此,我们报道来自酵母、绿藻和人类的中心蛋白与酵母中心体组分Kar1p的一个肽段具有高亲和力结合。有趣的是,中心蛋白的结合受生理相关的钙离子浓度变化调控,且这种对钙离子的依赖性受Kar1p肽段内酸性氨基酸的影响,这些酸性氨基酸也会阻止相关酵母钙调蛋白的有效结合。然而,一种杂合蛋白,其具有酵母中心蛋白Cdc31p的第三个和第四个EF手结构域以及酵母钙调蛋白的氨基末端一半,其行为更像Cdc31p,这表明Cdc31p的羧基末端一半影响结合特异性。除了Kar1p,中心蛋白还与酵母钙调蛋白结合位点结合,这解释了CDC31对钙调蛋白突变体的剂量依赖性抑制作用。与钙离子对中心蛋白功能的重要作用一致,Cdc31p的第一个或第四个EF手结构域发生突变,损害了钙离子诱导的Cdc31p构象变化,导致体内蛋白无功能。我们的结果表明,中心蛋白参与钙离子信号传导,可能是通过响应钙离子浓度变化影响靶蛋白的特性来实现的。

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