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离子与S100蛋白的结合。I. 牛脑S100αα、S100a(αβ)和S100b(ββ)蛋白的钙结合和锌结合特性:Zn2+调节S100b蛋白上的Ca2+结合。

Ions binding to S100 proteins. I. Calcium- and zinc-binding properties of bovine brain S100 alpha alpha, S100a (alpha beta), and S100b (beta beta) protein: Zn2+ regulates Ca2+ binding on S100b protein.

作者信息

Baudier J, Glasser N, Gerard D

出版信息

J Biol Chem. 1986 Jun 25;261(18):8192-203.

PMID:3722149
Abstract

Flow dialysis measurements of calcium binding to bovine brain S100 alpha alpha, S100a (alpha beta), and S100b (beta beta) proteins in 20 mM Tris-HCl buffer at pH 7.5 and 8.3 revealed that S100 proteins bind specifically 4 Ca2+ eq/mol of protein dimer. The specific calcium-binding sites had, therefore, been assigned to typical amino acid sequences on the alpha and beta subunit. The protein affinity for calcium is much lower in the presence of magnesium and potassium. Potassium strongly antagonizes calcium binding on two calcium-binding sites responsible for most of the Ca2+-induced conformational changes on S100 proteins (probably site II alpha and site II beta). Zinc-binding studies in the absence of divalent cations revealed eight zinc-binding sites/mol of S100b protein dimer that we assumed to correspond to 4 zinc-binding sites/beta subunit. Zinc binding to S100b studied with UV spectroscopy methods showed that the occupation of the four higher affinity sites and the four lower affinity sites on the protein dimer were responsible for different conformational changes in S100b structure. Zinc binding on the higher affinity sites regulates calcium binding to S100b by increasing the protein affinity for calcium and decreasing the antagonistic effect of potassium on calcium binding. Zinc-binding studies on S100a and S100 alpha alpha protein showed that the Trp-containing S100 proteins bind zinc more weakly than S100b protein. Calcium-binding studies on zinc-bound S100a proved that calcium- and zinc-binding sites were distinct although there was no increase in zinc-bound S100a affinity for calcium, as in S100b protein. Finally we provide evidence that discrepancies between previously published results on the optical properties of S100b protein probably result from oxidation of the sulfhydryl groups in the protein.

摘要

在pH 7.5和8.3的20 mM Tris-HCl缓冲液中,采用流动透析法测定钙与牛脑S100αα、S100a(αβ)和S100b(ββ)蛋白的结合,结果显示S100蛋白特异性结合4个Ca2+当量/摩尔蛋白二聚体。因此,特定的钙结合位点已被定位到α和β亚基上的典型氨基酸序列。在镁和钾存在的情况下,蛋白质对钙的亲和力要低得多。钾强烈拮抗钙在两个钙结合位点上的结合,这两个位点负责S100蛋白上大多数由Ca2+诱导的构象变化(可能是位点IIα和位点IIβ)。在不存在二价阳离子的情况下进行的锌结合研究表明,S100b蛋白二聚体每摩尔有8个锌结合位点,我们假定其对应于每个β亚基4个锌结合位点。用紫外光谱法研究锌与S100b的结合表明,蛋白质二聚体上4个高亲和力位点和4个低亲和力位点的占据导致了S100b结构的不同构象变化。锌在高亲和力位点上的结合通过增加蛋白质对钙的亲和力和降低钾对钙结合的拮抗作用来调节钙与S100b的结合。对S100a和S100αα蛋白的锌结合研究表明,含色氨酸的S100蛋白比S100b蛋白与锌的结合更弱。对锌结合的S100a进行的钙结合研究证明,钙结合位点和锌结合位点是不同的,尽管与S100b蛋白不同,锌结合的S100a对钙的亲和力没有增加。最后,我们提供证据表明,先前发表的关于S100b蛋白光学性质的结果之间的差异可能是由于蛋白质中巯基的氧化所致。

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