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首页> 外文期刊>OMICS: A journal of integrative biology >Prediction of Stability upon Point Mutation in the Context of the Folding Nucleus
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Prediction of Stability upon Point Mutation in the Context of the Folding Nucleus

机译:稳定在点突变的预测折叠的细胞核

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摘要

Proteins come in all shapes and sizes. Although it is possible to predict with reasonable success their structure from their sequence, the process of folding a chain of amino acids into its tertiary structure remains partially understood. This article addresses several characteristics pertaining to protein folding. The development of the Most Interacting Residues (MIR) algorithm, which dynamically simulates the early folding events, permits a reasonable ab initio prediction of the deeply buried critical residues involved in the formation of the protein core. The analysis of MIR positions with respect to protein 3D topology, in particular, to fragments called Tightened End Fragments (TEF) that might be good candidate for autonomous folding units, suggests that they are also essential for defining core stability. To validate this hypothesis, this study measures the sensitivity of MIR residues to point mutations. It is performed on a set of 385 proteins from a database that contains stability data calculated with five different algorithms. Tools have been developed to help the analysis and a consensus of the five methods is proposed. It results that positions predicted both as a MIR and a minimum of stability for the consensus are good candidates for the folding nucleus, and consequently their mutations may be hazardous.
机译:有各种形状和大小的蛋白质。可以预测与合理的成功他们的结构序列,这一过程氨基酸的链的折叠三级结构是部分理解。本文描述了几个特点用于修饰或说明蛋白质折叠。最互动的残留物(MIR)算法,动态模拟早期折叠事件,允许一个合理的从头开始的预测深埋地下的关键残基参与蛋白质形成的核心。米尔位置对蛋白质的分析尤其是3 d拓扑,叫做碎片收紧片段(微软)这可能是好的候选人自动折叠单位,建议他们也是必不可少的核心定义稳定。研究措施米尔残留的敏感性点突变。蛋白质从数据库包含稳定数据计算与五种不同的算法。工具已经开发,以帮助分析和提出的五个方法达成共识。这结果位置预测米尔和最低稳定的共识适合使用折叠核因此他们的突变可能有害。

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