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在结构基因组学蛋白质中寻找功能位点。

Finding functional sites in structural genomics proteins.

作者信息

Stark Alexander, Shkumatov Alexander, Russell Robert B

机构信息

EMBL, Meyerhofstrasse 1, 69117 Heidelberg, Germany.

出版信息

Structure. 2004 Aug;12(8):1405-12. doi: 10.1016/j.str.2004.05.012.

Abstract

Assigning function to structures is an important aspect of structural genomics projects, since they frequently provide structures for uncharacterized proteins. Similarities uncovered by structure alignment can suggest a similar function, even in the absence of sequence similarity. For proteins adopting novel folds or those with many functions, this strategy can fail, but functional clues can still come from comparison of local functional sites involving a few key residues. Here we assess the general applicability of functional site comparison through the study of 157 proteins solved by structural genomics initiatives. For 17, the method bolsters confidence in predictions made based on overall fold similarity. For another 12 with new folds, it suggests functions, including a putative phosphotyrosine binding site in the Archaeal protein Mth1187 and an active site for a ribose isomerase. The approach is applied weekly to all new structures, providing a resource for those interested in using structure to infer function.

摘要

为蛋白质结构赋予功能是结构基因组学项目的一个重要方面,因为这些项目经常为未表征的蛋白质提供结构。即使在没有序列相似性的情况下,通过结构比对发现的相似性也可以暗示相似的功能。对于采用新折叠方式的蛋白质或具有多种功能的蛋白质,这种策略可能会失败,但功能线索仍可来自涉及少数关键残基的局部功能位点的比较。在此,我们通过对结构基因组学计划解析的157种蛋白质进行研究,评估功能位点比较的普遍适用性。对于其中17种蛋白质,该方法增强了基于整体折叠相似性所做预测的可信度。对于另外12种具有新折叠方式的蛋白质,该方法提示了其功能,包括古细菌蛋白Mth1187中一个假定的磷酸酪氨酸结合位点和一种核糖异构酶的活性位点。该方法每周都会应用于所有新结构,为那些有兴趣利用结构来推断功能的人提供了一种资源。

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