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首页> 外文期刊>Journal of Biomolecular Structure and Dynamics >Engineering strontium binding affinity in an EF-hand motif: a quantum chemical and molecular dynamics study.
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Engineering strontium binding affinity in an EF-hand motif: a quantum chemical and molecular dynamics study.

机译:EF手基序中的工程锶结合亲和力:量子化学和分子动力学研究。

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Proteins with the ability to specifically bind strontium would potentially be of great use in the field of nuclear waste management. Unfortunately, no such peptides or proteins are known -- indeed, it is uncertain whether they exist under natural conditions due to low environmental concentrations of strontium. To investigate the possibility of devising such molecules, one of us (CV), in a previous experimental study, proposed starting from an EF-hand motif of the protein calmodulin and mutating some residues to change the motif's specificity for calcium into one for strontium. In this paper, which represents a theoretical complement to the experimental work, we analyzed small-molecule crystallographic structures and performed quantum chemical calculations to identify possible mutations. We then constructed seven mutant sequences of the EF-hand motif and analyzed their dynamical and binding behaviors using molecular dynamics simulations and free-energy calculations (using the MM/PBSA method). As a result of these analyzes we were able to isolate some characteristics that could lead to mutant peptides with enhanced strontium affinity.
机译:具有特异性结合锶能力的蛋白质在核废料管理领域中可能具有很大的用途。不幸的是,尚无此类肽或蛋白质-实际上,由于锶的环境浓度较低,因此不确定它们是否存在于自然条件下。为了研究设计此类分子的可能性,在我们之前的一项实验研究中,我们中的一个人(CV)提出从蛋白质钙调蛋白的EF手基序开始,并对一些残基进行突变,以将基序对钙的特异性改变为锶。在本文中,作为对实验工作的理论补充,我们分析了小分子晶体结构,并进行了量子化学计算以识别可能的突变。然后,我们构建了EF手基序的七个突变序列,并使用分子动力学模拟和自由能计算(使用MM / PBSA方法)分析了它们的动力学和结合行为。这些分析的结果是,我们能够分离出一些特征,这些特征可能导致锶亲和力增强的突变肽。

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