Aloy Patrick, Russell Robert B
European Molecular Biology Laboratory (EMBL), Postfach 10 22 09, D-69012, Heidelberg, Germany.
Proc Natl Acad Sci U S A. 2002 Apr 30;99(9):5896-901. doi: 10.1073/pnas.092147999. Epub 2002 Apr 23.
Protein-protein interactions are central to most biological processes. Although much recent effort has been put into methods to identify interacting partners, there has been a limited focus on how these interactions compare with those known from three-dimensional (3D) structures. Because comparison of protein interactions often involves considering homologous, but not identical, proteins, a key issue is whether proteins that are homologous to an interacting pair will interact in the same way, or interact at all. Accordingly, we describe a method to test putative interactions on complexes of known 3D structure. Given a 3D complex and alignments of homologues of the interacting proteins, we assess the fit of any possible interacting pair on the complex by using empirical potentials. For studies of interacting protein families that show different specificities, the method provides a ranking of interacting pairs useful for prioritizing experiments. We evaluate the method on interacting families of proteins with multiple complex structures. We then consider the fibroblast growth factor/receptor system and explore the intersection between complexes of known structure and interactions proposed between yeast proteins by methods such as two-hybrids. We provide confirmation for several interactions, in addition to suggesting molecular details of how they occur.
蛋白质-蛋白质相互作用是大多数生物过程的核心。尽管最近在识别相互作用伙伴的方法上投入了大量精力,但对于这些相互作用与三维(3D)结构中已知的相互作用相比情况如何,关注较少。由于蛋白质相互作用的比较通常涉及考虑同源但不相同的蛋白质,一个关键问题是与相互作用对同源的蛋白质是否会以相同方式相互作用,或者是否会发生相互作用。因此,我们描述了一种在已知3D结构的复合物上测试假定相互作用的方法。给定一个3D复合物以及相互作用蛋白质的同源物比对,我们通过使用经验势来评估复合物上任何可能的相互作用对的契合度。对于显示不同特异性的相互作用蛋白家族的研究,该方法提供了一个相互作用对的排名,有助于对实验进行优先级排序。我们在具有多种复杂结构的相互作用蛋白家族上评估该方法。然后我们考虑成纤维细胞生长因子/受体系统,并通过双杂交等方法探索已知结构的复合物与酵母蛋白之间提出的相互作用的交集。除了提出它们如何发生的分子细节外,我们还证实了几种相互作用。