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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Correlated Conformational Motions of the KH Domains of Far Upstream Element Binding Protein Complexed with Single-Stranded DNA Oligomers
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Correlated Conformational Motions of the KH Domains of Far Upstream Element Binding Protein Complexed with Single-Stranded DNA Oligomers

机译:远上游元素结合蛋白与单链DNA寡聚体复合的KH域的相关构象运动。

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摘要

Single-stranded DNA binding (SSB) proteins bind with single-stranded DNA (ss-DNA) segments that are generated as intermediates during DNA metabolic processes. The primary function of an SSB protein is to protect the ss-DNA from being degraded so that other enzymes can effectively act on it. We have performed atomistic molecular dynamics simulations of the two DNA binding K homology (KH) domains (KH3 and KH4) of the far upstream element (FUSE) binding protein (FBP) complexed with two ss-DNA oligomers in aqueous solutions. Attempts have been made to study the effects of complexation on the internal motions of the protein domains and the correlated dynamics of the amino acid residue side chains. In agreement with experiments, KH3 domain has been found to be relatively more flexible in the complexed state. The calculations reveal increased long-range anticorrelated motions among several amino acid residues in the complexed forms. Compared to the KH4 domain, noticeable increase in N-H dipole ordering on complexation has been observed for the KH3 domain. Importantly, it is demonstrated that the effects of the DNA strands on the side chain orientations of the arginine and lysine residues and their ordering and dynamics play critical roles in forming the complexes and their structural stability.
机译:单链DNA结合(SSB)蛋白与DNA代谢过程中作为中间体产生的单链DNA(ss-DNA)片段结合。 SSB蛋白的主要功能是保护ss-DNA免受降解,以便其他酶可以有效地对其起作用。我们已经对水溶液中与两个ss-DNA寡聚物复合的远上游元件(FUSE)结合蛋白(FBP)的两个DNA结合K同源性(KH)域(KH3和KH4)进行了原子分子动力学模拟。已经尝试研究络合对蛋白质结构域内部运动和氨基酸残基侧链的相关动力学的影响。与实验一致,已经发现KH3结构域在复杂状态下相对更灵活。计算结果表明,复合形式的几个氨基酸残基之间增加了远距离的反相关运动。与KH4结构域相比,对于KH3结构域,观察到络合时N-H偶极子排列显着增加。重要的是,已证明DNA链对精氨酸和赖氨酸残基的侧链取向的影响及其有序和动力学在形成复合物及其结构稳定性中起关键作用。

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