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Conformational Dynamics in Loop Swap Mutants of Homologous Fibronectin Type III Domains

机译:同源纤连蛋白III型域的环交换突变体的构象动力学。

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摘要

Fibronectin type III (FN-III) domains are autonomously folded modules found in a variety of multidomain proteins. The 10th FN-III domain from fibronectin (fnFN10) and the 3rd FN-III domain from tenascin-C (tnFN3) have 27% sequence identity and the same overall fold; however, the CC′ loop has a different pattern of backbone hydrogen bonds and the FG loop is longer in fnFN10 compared to tnFN3. To examine the influence of length, sequence, and context in determining dynamical properties of loops, CC′ and FG loops were swapped between fnFN10 and tnFN3 to generate four mutant proteins and backbone conformational dynamics on ps-ns and μs-ms timescales were characterized by solution 15N-NMR spin relaxation spectroscopy. The grafted loops do not strongly perturb the properties of the protein scaffold; however, specific effects of the mutations are observed for amino acids that are proximal in space to the sites of mutation. The amino acid sequence primarily dictates conformational dynamics when the wild-type and grafted loop have the same length, but both sequence and context contribute to conformational dynamics when the loop lengths differ. The results suggest that changes in conformational dynamics of mutant proteins must be considered in both theoretical studies and protein design efforts.
机译:纤连蛋白III型(FN-III)域是在多种多域蛋白中发现的自主折叠模块。来自纤连蛋白的第10个FN-III结构域(fnFN10)和来自腱生蛋白C的第3个FN-III结构域(tnFN3)具有27%的序列同一性和相同的整体折叠;然而,与tnFN3相比,fnFN10中的CC'环具有不同的主链氢键模式,FG环更长。为了检查长度,序列和环境对确定环动力学特性的影响,将CC'和FG环在fnFN10和tnFN3之间交换以生成四个突变蛋白,并通过ps-ns和μs-ms时标表征了骨架构象动力学。溶液15N-NMR自旋弛豫光谱。嫁接的环不会强烈干扰蛋白质支架的性质;然而,对于在空间上接近突变位点的氨基酸,观察到了突变的特定作用。当野生型和嫁接的环具有相同的长度时,氨基酸序列主要决定构象动力学,但是当环的长度不同时,序列和背景都有助于构象动力学。结果表明,在理论研究和蛋白质设计工作中都必须考虑突变蛋白质的构象动力学变化。

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