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关于 EF 手结构域中的钙结合和构象变化:钙调蛋白 N 结构域的钙饱和中间产物的实验证据。

On the Ca binding and conformational change in EF-hand domains: Experimental evidence of Ca-saturated intermediates of N-domain of calmodulin.

机构信息

Department of Pathology, University of Cambridge, Tennis Court Road, Cambridge CB2 1QP, UK; University of East London, School of Health, Sport and Bioscience, Water Lane, London E15 4LZ, UK.

Department of Biochemistry, University of Cambridge, Tennis Court Road, Cambridge CB2 1QP, UK.

出版信息

Biochim Biophys Acta Proteins Proteom. 2017 Jun;1865(6):640-651. doi: 10.1016/j.bbapap.2017.03.003. Epub 2017 Mar 10.

DOI:10.1016/j.bbapap.2017.03.003
PMID:28288938
Abstract

Double mutation of Q41L and K75I in the N-domain of calmodulin (N-Cam) stabilizes the closed form of N-Cam such that binding of Ca in solution no longer triggers a conformational change to the open form, and its Ca binding affinity decreases dramatically. To further investigate the solvation effects on the structure, Ca binding affinity and conformational dynamics of this N-Cam double mutant in the Ca saturated state, we solved its X-ray structure. Surprisingly, the structure revealed an open conformation of the domain which contradicts its closed conformation in solution. Here we provide evidence that crystallization conditions were responsible for this Ca-saturated domain open conformation in the crystal. Importantly, we demonstrate that the presence of the crystallization co-precipitant and alcohols were able to induce a progressive opening of the closed form of this domain, in Ca saturated state, in solution. However, in the Ca depleted state, addition of alcohols was unable to induce any opening of this domain in solution. In addition, in the Ca saturated state, the molecular dynamics simulations show that while N-Cam can populate the open and closed conformation, the N-Cam double mutant exclusively populates the closed conformation. Our results provide experimental evidence of intermediate conformations of Ca-saturated N-Cam in solution. We propose that conformational change of Ca sensor EF-hand domains depends on solvation energetics, Ca binding to promote the full open form, Ca depleted state conformational dynamics, and the chemical properties of the molecules nearby key residues such as those at positions 41 and 75 in N-Cam.

摘要

钙调蛋白(N-Cam)N 结构域中的 Q41L 和 K75I 双突变稳定了 N-Cam 的闭构形式,使得溶液中的 Ca 结合不再引发构象向开构的转变,并且其 Ca 结合亲和力显著降低。为了进一步研究溶剂效应对结构、Ca 结合亲和力和该 N-Cam 双突变体在 Ca 饱和状态下构象动力学的影响,我们解析了其 X 射线结构。令人惊讶的是,该结构显示了该结构域的开构形式,与溶液中的闭构形式相矛盾。在这里,我们提供的证据表明,结晶条件是导致该 Ca 饱和域在晶体中呈现开构的原因。重要的是,我们证明了结晶共沉淀剂和醇的存在能够诱导该结构域在 Ca 饱和状态下在溶液中逐渐打开闭构。然而,在 Ca 耗尽状态下,添加醇无法诱导该结构域在溶液中发生任何打开。此外,在 Ca 饱和状态下,分子动力学模拟表明,虽然 N-Cam 可以占据开构和闭构,但 N-Cam 双突变体仅占据闭构。我们的结果提供了 Ca 饱和 N-Cam 在溶液中存在中间构象的实验证据。我们提出,Ca 传感器 EF 手结构域的构象变化取决于溶剂化能、Ca 结合以促进完全开构、Ca 耗尽状态构象动力学以及附近分子的化学性质,如 N-Cam 中位置 41 和 75 的残基。

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