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Predicting disulfide bond connectivity in proteins by correlated mutations analysis

机译:通过相关突变分析预测蛋白质中的二硫键连接性

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Motivation: Prediction of disulfide bond connectivity facilitates structural and functional annotation of proteins. Previous studies suggest that cysteines of a disulfide bond mutate in a correlated manner. Results: We developed a method that analyzes correlated mutation patterns in multiple sequence alignments in order to predict disulfide bond connectivity. Proteins with known experimental structures and varying numbers of disulfide bonds, and that spanned various evolutionary distances, were aligned. We observed frequent variation of disulfide bond connectivity within members of the same protein families, and it was also observed that in 99 of the cases, cysteine pairs forming non-conserved disulfide bonds mutated in concert. Our data support the notion that substitution of a cysteine in a disulfide bond prompts the substitution of its cysteine partner and that oxidized cysteines appear in pairs. The method we developed predicts disulfide bond connectivity patterns with accuracies of 73, 69 and 61 for proteins with two, three and four disulfide bonds, respectively.
机译:动机:对二硫键连接性的预测有助于蛋白质的结构和功能注释。先前的研究表明,二硫键的半胱氨酸以相关的方式突变。结果:我们开发了一种方法来分析多个序列比对中的相关突变模式,以预测二硫键的连通性。排列了具有已知实验结构和二硫键数量不等且跨越不同进化距离的蛋白质。我们观察到同一蛋白质家族成员中二硫键连接性的频繁变化,并且还观察到在99个案例中,形成非保守二硫键的半胱氨酸对协同突变。我们的数据支持这样的观点,即二硫键中的半胱氨酸取代会提示其半胱氨酸伴侣的取代,而氧化的半胱氨酸成对出现。我们开发的方法预测具有两个,三个和四个二硫键的蛋白质的二硫键连接模式分别为73、69和61。

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