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钙诱导的钙网蛋白和钙调蛋白中的蛋白质折叠

Calcium-Induced Protein Folding in Calumenin and Calmodulin.

作者信息

Mazzorana Marco, Sørensen Thomas Lykke-Møller

机构信息

Diamond Light Source, Harwell Science and Innovation Campus, Didcot, UK.

Department of Molecular Biology and Genetics, Aarhus University, Aarhus C, Denmark.

出版信息

Methods Mol Biol. 2019;1929:517-537. doi: 10.1007/978-1-4939-9030-6_32.

Abstract

Binding of calcium - and small molecules in general - often induce conformational changes in large molecules and complexes. The degree and type of change varies, but the resulting shift in specific affinities ultimately induces a physiological response. It is therefore important for our understanding of responses at the cellular level to define coupled changes at the molecular level.Calumenin, a six-EF-hand calcium-binding protein localized in the endoplasmic reticulum, undergoes substantial calcium-induced rearrangement. We have demonstrated how calumenin changes from being unfolded in the absence of calcium to a compact trilobal fold in the presence of calcium (Mazzorana et al., PLoS One 11:e0151547, 2016).Here, we describe protocols for the expression and purification of calumenin and calmodulin, another EF-hand protein modulated by calcium, along with protocols for biophysical techniques used to characterize calcium-induced changes to protein conformation. Analytical size-exclusion chromatography in the presence and absence of calcium provides an informed indication of any larger conformational movements. Circular dichroism spectroscopy reveals alterations to the secondary or tertiary structure, while small-angle X-ray scattering explores changes further providing low-resolution conformational details.Surface plasmon resonance estimates binding kinetics and affinities completing the biophysical description of these events.

摘要

一般来说,钙及小分子的结合常常会诱导大分子和复合物发生构象变化。变化的程度和类型各不相同,但特定亲和力的最终变化会引发生理反应。因此,对于我们理解细胞水平的反应而言,在分子水平上定义相关变化非常重要。钙网蛋白是一种定位于内质网的具有六个EF手型结构域的钙结合蛋白,会发生显著的钙诱导重排。我们已经证明了钙网蛋白在无钙时如何从不折叠状态转变为在有钙时的紧密三叶形折叠结构(马佐拉纳等人,《公共科学图书馆·综合》11:e0151547,2016年)。

在此,我们描述了钙网蛋白和钙调蛋白(另一种受钙调节的EF手型蛋白)的表达和纯化方案,以及用于表征钙诱导的蛋白质构象变化的生物物理技术方案。在有钙和无钙情况下进行的分析型尺寸排阻色谱法能为任何较大的构象变化提供有价值的指示。圆二色光谱揭示了二级或三级结构的变化,而小角X射线散射则进一步探索变化情况,提供低分辨率的构象细节。表面等离子体共振可估算结合动力学和亲和力,从而完成对这些事件的生物物理描述。

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