首页> 外文期刊>Nucleic Acids Research >HOMCOS: a server to predict interacting protein pairs and interacting sites by homology modeling of complex structures.
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HOMCOS: a server to predict interacting protein pairs and interacting sites by homology modeling of complex structures.

机译:HOMCOS:通过复杂结构的同源建模预测相互作用的蛋白质对和相互作用位点的服务器。

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摘要

As protein-protein interactions are crucial in most biological processes, it is valuable to understand how and where protein pairs interact. We developed a web server HOMCOS (Homology Modeling of Complex Structure, http://biunit.naist.jp/homcos) to predict interacting protein pairs and interacting sites by homology modeling of complex structures. Our server is capable of three services. The first is modeling heterodimers from two query amino acid sequences posted by users. The server performs BLAST searches to identify homologous templates in the latest representative dataset of heterodimer structures generated from the PQS database. Structure validity is evaluated by the combination of sequence similarity and knowledge-based contact potential energy as previously described. The server generates a sequence-replaced model PDB file and a MODELLER script to build full atomic models of complex structures. The second service is modeling homodimers from one query sequence. The third service is identification of potentially interacting proteins for one query sequence. The server searches the dataset of heterodimer structures for a homologous template, outputs the candidate interacting sequences in the Uniprot database homologous for the interacting partner template proteins. These features are useful for wide range of researchers to predict putative interaction sites and interacting proteins.
机译:由于蛋白质-蛋白质相互作用在大多数生物学过程中至关重要,因此了解蛋白质对如何相互作用以及在何处相互作用非常重要。我们开发了Web服务器HOMCOS(复杂结构的同源性建模,http://biunit.naist.jp/homcos),以通过复杂结构的同源性建模预测相互作用的蛋白质对和相互作用的位点。我们的服务器可以提供三种服务。首先是根据用户发布的两个查询氨基酸序列对异二聚体进行建模。服务器执行BLAST搜索,以识别从PQS数据库生成的最新异二聚体结构代表性数据集中的同源模板。如前所述,通过序列相似性和基于知识的接触势能的组合来评估结构有效性。服务器生成替换序列的模型PDB文件和MODELLER脚本,以构建复杂结构的完整原子模型。第二项服务是根据一个查询序列对同二聚体进行建模。第三项服务是针对一个查询序列识别潜在相互作用的蛋白质。服务器在异二聚体结构的数据集中搜索同源模板,并在Uniprot数据库中输出与相互作用的伴侣模板蛋白同源的候选相互作用序列。这些功能对于广泛的研究人员预测预测的相互作用位点和相互作用蛋白很有用。

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