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Predicting the oxidation state of cysteines by multiple sequence alignment.

机译:通过多序列比对预测半胱氨酸的氧化态。

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MOTIVATION: Protein sequences found in databanks usually do not report post translational covalent modifications such as the oxidation state of cystein (Cys) residues. Accurate prediction of whether a functionally or structurally important Cys occurs in the oxidized or thiol form would be helpful for molecular biology experiments and structure prediction. RESULTS: A new method is presented for predicting the oxidation state of Cys residues based on multiple sequence alignments and on the observation that Cys tends to occur in the same oxidation state within the same protein. The prediction of the redox state of Cys performs above 82%. The oxidation state of Cys correlates with the cellular location of the given protein within the cell, but the correlation is not perfect (up to 70%). We also perform a statistical analysis of the different redox states of Cys found in secondary structures and buried positions, and of the secondary structures linked by disulfide bonds. The results suggest that the natural borderline lies between the different oxidation states of Cys rather than between the half cystines and cysteins. AVAILABILITY: A web server implementing the prediction method is available at http://guitar.rockefeller.edu/approximately andras/cyspred.html CONTACT: fisera@rockefeller.edu
机译:动机:数据库中发现的蛋白质序列通常不报告翻译后共价修饰,例如半胱氨酸(Cys)残基的氧化态。准确预测功能上或结构上重要的半胱氨酸是否以氧化或巯基形式存在,将有助于分子生物学实验和结构预测。结果:提出了一种新的方法来预测Cys残基的氧化状态基于多个序列比对,并观察到Cys倾向于在同一蛋白质中以相同的氧化状态发生。 Cys的氧化还原状态的预测执行高于82%。 Cys的氧化状态与给定蛋白质在细胞内的细胞位置相关,但这种关系并不完美(高达70%)。我们还对二级结构和掩埋位置中发现的半胱氨酸的不同氧化还原状态以及通过二硫键连接的二级结构进行了统计分析。结果表明,自然界线位于半胱氨酸的不同氧化态之间,而不是半胱氨酸和半胱氨酸之间。可用性:可以在http://guitar.rockefeller.edu/approximatelyly andras / cyspred.html上获得实现预测方法的Web服务器。联系人:fisera@rockefeller.edu

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