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Cysteine separations profiles on protein sequences infer disulfide connectivity

机译:蛋白序列上的半胱氨酸分离谱可推断二硫键的连通性

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Motivation: Disulfide bonds play an important role in protein folding. A precise prediction of disulfide connectivity can strongly reduce the conformational search space and increase the accuracy in protein structure prediction. Conventional disulfide connectivity predictions use sequence information, and prediction accuracy is limited. Here, by using an alternative scheme with global information for disulfide connectivity prediction, higher performance is obtained with respect to other approaches.Result: Cysteine separation profiles have been used to predict the disulfide connectivity of proteins. The separations among oxidized cysteine residues on a protein sequence have been encoded into vectors named cysteine separation profiles (CSPs). Through comparisons of their CSPs, the disulfide connectivity of a test protein is inferred from a non-redundant template set. For non-redundant proteins in SwissProt 39 (SP39) sharing less than 30% sequence identity, the prediction accuracy of a fourfold cross-validation is 49%. The prediction accuracy of disulfide connectivity for proteins in SwissProt 43 (SP43) is even higher (53%). The relationship between the similarity of CSPs and the prediction accuracy is also discussed. The method proposed in this work is relatively simple and can generate higher accuracies compared to conventional methods. It may be also combined with other algorithms for further improvements in protein structure prediction.
机译:动机:二硫键在蛋白质折叠中起重要作用。对二硫键连接性的精确预测可以大大减少构象搜索空间,并提高蛋白质结构预测的准确性。常规的二硫键连通性预测使用序列信息,并且预测精度受到限制。在此,通过使用具有全局信息的替代方案进行二硫键连通性预测,相对于其他方法,可以获得更高的性能。结果:半胱氨酸分离谱已用于预测蛋白质的二硫键连通性。蛋白质序列上氧化的半胱氨酸残基之间的分离已编码到称为半胱氨酸分离谱(CSP)的载体中。通过比较其CSP,可以从非冗余模板集中推断出测试蛋白的二硫键连接性。对于共享少于30%序列同一性的SwissProt 39(SP39)中的非冗余蛋白,四重交叉验证的预测准确性为49%。 SwissProt 43(SP43)中蛋白质的二硫键连接性的预测准确性更高(53%)。还讨论了CSP相似度与预测精度之间的关系。与常规方法相比,这项工作中提出的方法相对简单,并且可以产生更高的精度。它也可以与其他算法结合使用,以进一步改善蛋白质结构预测。

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