Centre for Integrative Bioinformatics, VU University Amsterdam, De Boelelaan 1081A, 1081HV Amsterdam, The Netherlands.
Nucleic Acids Res. 2010 Jul;38(Web Server issue):W35-40. doi: 10.1093/nar/gkq415. Epub 2010 Jun 4.
Many protein families contain sub-families with functional specialization, such as binding different ligands or being involved in different protein-protein interactions. A small number of amino acids generally determine functional specificity. The identification of these residues can aid the understanding of protein function and help finding targets for experimental analysis. Here, we present multi-Harmony, an interactive web sever for detecting sub-type-specific sites in proteins starting from a multiple sequence alignment. Combining our Sequence Harmony (SH) and multi-Relief (mR) methods in one web server allows simultaneous analysis and comparison of specificity residues; furthermore, both methods have been significantly improved and extended. SH has been extended to cope with more than two sub-groups. mR has been changed from a sampling implementation to a deterministic one, making it more consistent and user friendly. For both methods Z-scores are reported. The multi-Harmony web server produces a dynamic output page, which includes interactive connections to the Jalview and Jmol applets, thereby allowing interactive analysis of the results. Multi-Harmony is available at http://www.ibi.vu.nl/ programs/shmrwww.
许多蛋白质家族包含具有功能专业化的亚家族,例如结合不同的配体或参与不同的蛋白质-蛋白质相互作用。少数氨基酸通常决定功能特异性。这些残基的鉴定有助于理解蛋白质的功能,并有助于找到实验分析的目标。在这里,我们介绍了 multi-Harmony,这是一个交互式网络服务器,用于从多个序列比对中检测蛋白质中的亚型特异性位点。在一个网络服务器中结合我们的 Sequence Harmony (SH) 和 multi-Relief (mR) 方法,允许同时分析和比较特异性残基;此外,这两种方法都得到了显著的改进和扩展。SH 已扩展到可以处理两个以上的子组。mR 已从采样实现改为确定性实现,使其更加一致和用户友好。对于这两种方法,都报告了 Z 分数。multi-Harmony 网络服务器生成一个动态输出页面,其中包括与 Jalview 和 Jmol 小程序的交互式连接,从而允许对结果进行交互式分析。Multi-Harmony 可在 http://www.ibi.vu.nl/ programs/shmrwww 获得。