Fidler David R, Murphy Sarah E, Courtis Katherine, Antonoudiou Pantelis, El-Tohamy Rana, Ient Jonathan, Levine Timothy P
Department of Cell Biology, UCL Institute of Ophthalmology, London, UK.
Traffic. 2016 Nov;17(11):1214-1226. doi: 10.1111/tra.12432. Epub 2016 Oct 9.
Advances in membrane cell biology are hampered by the relatively high proportion of proteins with no known function. Such proteins are largely or entirely devoid of structurally significant domain annotations. Structural bioinformaticians have developed profile-profile tools such as HHsearch (online version called HHpred), which can detect remote homologies that are missed by tools used to annotate databases. Here we have applied HHsearch to study a single structural fold in a single model organism as proof of principle. In the entire clan of protein domains sharing the pleckstrin homology domain fold in yeast, systematic application of HHsearch accurately identified known PH-like domains. It also predicted 16 new domains in 13 yeast proteins many of which are implicated in intracellular traffic. One of these was Vps13p, where we confirmed the functional importance of the predicted PH-like domain. Even though such predictions require considerable work to be corroborated, they are useful first steps. HHsearch should be applied more widely, particularly across entire proteomes of model organisms, to significantly improve database annotations.
膜细胞生物学的进展受到未知功能蛋白质比例相对较高的阻碍。这类蛋白质在很大程度上或完全缺乏具有结构意义的结构域注释。结构生物信息学家已经开发了诸如HHsearch(在线版本称为HHpred)之类的profile-profile工具,这些工具可以检测数据库注释工具遗漏的远程同源性。在这里,我们应用HHsearch研究单一模式生物中的单一结构折叠作为原理证明。在酵母中共享普列克底物蛋白同源结构域折叠的整个蛋白质结构域家族中,HHsearch的系统应用准确地识别出已知的类PH结构域。它还预测了13种酵母蛋白中的16个新结构域,其中许多与细胞内运输有关。其中之一是Vps13p,我们在其中证实了预测的类PH结构域的功能重要性。尽管此类预测需要大量工作来证实,但它们是有用的第一步。HHsearch应更广泛地应用,特别是在模式生物的整个蛋白质组中,以显著改善数据库注释。