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相关突变:进展与局限。关于融合蛋白及粘着蛋白- dockerin家族的研究

Correlated mutations: advances and limitations. A study on fusion proteins and on the Cohesin-Dockerin families.

作者信息

Halperin Inbal, Wolfson Haim, Nussinov Ruth

机构信息

Sackler Institute of Molecular Medicine, Department of Human Genetics and Molecular Medicine, Sackler School of Medicine, Tel Aviv University, Tel Aviv, Israel.

出版信息

Proteins. 2006 Jun 1;63(4):832-45. doi: 10.1002/prot.20933.

Abstract

Correlated mutations have been repeatedly exploited for intramolecular contact map prediction. Over the last decade these efforts yielded several methods for measuring correlated mutations. Nevertheless, the application of correlated mutations for the prediction of intermolecular interactions has not yet been explored. This gap is due to several obstacles, such as 3D complexes availability, paralog discrimination, and the availability of sequence pairs that are required for inter- but not intramolecular analyses. Here we selected for analysis fusion protein families that bypass some of these obstacles. We find that several correlated mutation measurements yield reasonable accuracy for intramolecular contact map prediction on the fusion dataset. However, the accuracy level drops sharply in intermolecular contacts prediction. This drop in accuracy does not occur always. In the Cohesin-Dockerin family, reasonable accuracy is achieved in the prediction of both intra- and intermolecular contacts. The Cohesin-Dockerin family is well suited for correlated mutation analysis. Because, however, this family constitutes a special case (it has radical mutations, has domain repeats, within each species each Dockerin domain interacts with each Cohesin domain, see below), the successful prediction in this family does not point to a general potential in using correlated mutations for predicting intermolecular contacts. Overall, the results of our study indicate that current methodologies of correlated mutations analysis are not suitable for large-scale intermolecular contact prediction, and thus cannot assist in docking. With current measurements, sequence availability, sequence annotations, and underdeveloped sequence pairing methods, correlated mutations can yield reasonable accuracy only for a handful of families.

摘要

相关突变已被反复用于分子内接触图预测。在过去十年中,这些努力产生了几种测量相关突变的方法。然而,相关突变在分子间相互作用预测中的应用尚未得到探索。这种差距是由几个障碍造成的,例如三维复合物的可用性、旁系同源物的区分以及分子间而非分子内分析所需的序列对的可用性。在这里,我们选择了一些融合蛋白家族进行分析,这些家族绕过了其中一些障碍。我们发现,几种相关突变测量方法在融合数据集的分子内接触图预测中产生了合理的准确性。然而,在分子间接触预测中,准确性水平急剧下降。这种准确性下降并非总是发生。在粘着蛋白 - dockerin家族中,分子内和分子间接触的预测都取得了合理的准确性。粘着蛋白 - dockerin家族非常适合进行相关突变分析。然而,由于这个家族构成了一个特殊情况(它有激进突变、有结构域重复,在每个物种中每个dockerin结构域与每个粘着蛋白结构域相互作用,见下文),这个家族中的成功预测并不表明使用相关突变预测分子间接触具有普遍潜力。总体而言,我们的研究结果表明,当前的相关突变分析方法不适用于大规模的分子间接触预测,因此无法协助对接。基于当前的测量方法、序列可用性、序列注释以及不发达的数据配对方法,相关突变仅对少数家族能产生合理的准确性。

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