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Changes in Lysozyme Flexibility upon Mutation Are Frequent, Large and Long-Ranged

机译:突变后溶菌酶柔韧性的变化频繁,大且远距离

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摘要

We investigate changes in human c-type lysozyme flexibility upon mutation via a Distance Constraint Model, which gives a statistical mechanical treatment of network rigidity. Specifically, two dynamical metrics are tracked. Changes in flexibility index quantify differences within backbone flexibility, whereas changes in the cooperativity correlation quantify differences within pairwise mechanical couplings. Regardless of metric, the same general conclusions are drawn. That is, small structural perturbations introduced by single point mutations have a frequent and pronounced affect on lysozyme flexibility that can extend over long distances. Specifically, an appreciable change occurs in backbone flexibility for 48% of the residues, and a change in cooperativity occurs in 42% of residue pairs. The average distance from mutation to a site with a change in flexibility is 17–20 ?. Interestingly, the frequency and scale of the changes within single point mutant structures are generally larger than those observed in the hen egg white lysozyme (HEWL) ortholog, which shares 61% sequence identity with human lysozyme. For example, point mutations often lead to substantial flexibility increases within the β-subdomain, which is consistent with experimental results indicating that it is the nucleation site for amyloid formation. However, β-subdomain flexibility within the human and HEWL orthologs is more similar despite the lowered sequence identity. These results suggest compensating mutations in HEWL reestablish desired properties.
机译:我们通过距离约束模型研究突变后人c型溶菌酶柔性的变化,该模型给出了网络刚性的统计机械处理。具体来说,将跟踪两个动态指标。柔韧性指数的变化量化了骨干柔韧性内的差异,而协同相关性的变化则量化了成对机械耦合内的差异。无论度量标准如何,都得出相同的一般结论。也就是说,由单点突变引入的小结构扰动对溶菌酶的柔韧性产生了频繁且明显的影响,这种影响可以延伸很长的距离。具体而言,对于48%的残基,主链柔性发生了明显的变化,而42%的残基对则发生了协同作用的变化。从突变到具有柔性变化的位点的平均距离为17-20?。有趣的是,单点突变体结构内变化的频率和规模通常大于在鸡蛋清溶菌酶(HEWL)直系同源物中观察到的变化,该蛋白与人溶菌酶具有61%的序列同一性。例如,点突变通常导致β-亚结构域内的柔性大大增加,这与实验结果一致,表明它是淀粉样蛋白形成的成核位点。然而,尽管序列同一性降低,人和HEWL直系同源物内的β-亚结构域柔性更相似。这些结果表明,HEWL中的补偿性突变可重建所需的特性。

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