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饱和及亚饱和钙浓度下S100A1激活的分子基础

Molecular Basis of S100A1 Activation at Saturating and Subsaturating Calcium Concentrations.

作者信息

Scott Caitlin E, Kekenes-Huskey Peter M

机构信息

Department of Chemistry, University of Kentucky, Lexington, Kentucky.

Department of Chemistry, University of Kentucky, Lexington, Kentucky.

出版信息

Biophys J. 2016 Mar 8;110(5):1052-63. doi: 10.1016/j.bpj.2015.12.040.

Abstract

The S100A1 protein mediates a wide variety of physiological processes through its binding of calcium (Ca(2+)) and endogenous target proteins. S100A1 presents two Ca(2+)-binding domains: a high-affinity "canonical" EF (cEF) hand and a low-affinity "pseudo" EF (pEF) hand. Accumulating evidence suggests that both Ca(2+)-binding sites must be saturated to stabilize an open state conducive to peptide recognition, yet the pEF hand's low affinity limits Ca(2+) binding at normal physiological concentrations. To understand the molecular basis of Ca(2+) binding and open-state stabilization, we performed 100 ns molecular dynamics simulations of S100A1 in the apo/holo (Ca(2+)-free/bound) states and a half-saturated state, for which only the cEF sites are Ca(2+)-bound. Our simulations indicate that the pattern of oxygen coordination about Ca(2+) in the cEF relative to the pEF site contributes to the former's higher affinity, whereas Ca(2+) binding strongly reshapes the protein's conformational dynamics by disrupting β-sheet coupling between EF hands. Moreover, modeling of the half-saturated configuration suggests that the open state is unstable and reverts toward a closed state in the absence of the pEF Ca(2+) ion. These findings indicate that Ca(2+) binding at the cEF site alone is insufficient to stabilize opening; thus, posttranslational modification of the protein may be required for target peptide binding at subsaturating intracellular Ca(2+) levels.

摘要

S100A1蛋白通过与钙(Ca(2+))及内源性靶蛋白结合来介导多种生理过程。S100A1具有两个钙结合结构域:一个高亲和力的“典型”EF(cEF)结构域和一个低亲和力的“假”EF(pEF)结构域。越来越多的证据表明,两个钙结合位点都必须饱和才能稳定有利于肽识别的开放状态,但pEF结构域的低亲和力限制了在正常生理浓度下的钙结合。为了理解钙结合和开放状态稳定的分子基础,我们对处于无钙/结合钙(apo/holo)状态和半饱和状态(仅cEF位点结合钙)的S100A1进行了100纳秒的分子动力学模拟。我们的模拟表明,相对于pEF位点,cEF中钙的氧配位模式有助于前者具有更高的亲和力,而钙结合通过破坏EF结构域之间的β折叠偶联,强烈地重塑了蛋白质的构象动力学。此外,对半饱和构型的建模表明,在没有pEF钙(2+)离子的情况下,开放状态不稳定并会恢复为封闭状态。这些发现表明,仅cEF位点的钙结合不足以稳定开放状态;因此,在细胞内钙水平未饱和时,可能需要对该蛋白质进行翻译后修饰才能实现靶肽结合。

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