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Integrative approach for computationally inferring protein domain interactions.

机译:用于计算推断蛋白质域相互作用的整合方法。

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Motivation: The current need for high-throughput protein interaction detection has resulted in interaction data being generated en masse through such experimental methods as yeast-two-hybrids and protein chips. Such data can be erroneous and they often do not provide adequate functional information for the detected interactions. Therefore, it is useful to develop an in silico approach to further validate and annotate the detected protein interactions. Results: Given that protein-protein interactions involve physical interactions between protein domains, domain-domain interaction information can be useful for validating, annotating, and even predicting protein interactions. However, large-scale, experimentally determined domain-domain interaction data do not exist. Here, we describe an integrative approach to computationally derive putative domain interactions from multiple data sources, including protein interactions, protein complexes, and Rosetta Stone sequences. We further prove the usefulness of such an integrative approach by applying the derived domain interactions to predict and validate protein-protein interactions. Availability: A database of putative protein domain interactions derived using the method described in this paper is available at http://interdom.lit.org.sg. Contact: skng@lit.org.sg
机译:动机:目前对高通量蛋白质相互作用检测的需求已导致通过酵母二杂交体和蛋白质芯片等实验方法大规模产生相互作用数据。这样的数据可能是错误的,并且它们通常不为检测到的交互提供足够的功能信息。因此,开发计算机方法以进一步验证和注释检测到的蛋白质相互作用是有用的。结果:鉴于蛋白质间相互作用涉及蛋白质域之间的物理相互作用,因此域间相互作用信息可用于验证,注释甚至预测蛋白质相互作用。但是,不存在大规模的,实验确定的域-域交互数据。在这里,我们描述了一种综合方法,可从多个数据源计算得出推定的域相互作用,包括蛋白质相互作用,蛋白质复合物和Rosetta Stone序列。我们通过应用派生的域相互作用来预测和验证蛋白质-蛋白质相互作用,进一步证明了这种整合方法的有效性。可用性:使用本文描述的方法得出的推定蛋白质结构域相互作用的数据库可在http://interdom.lit.org.sg上获得。联络人:skng@lit.org.sg

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