Weis Center for Research, Laboratory of Signal Transduction, Geisinger Clinic, Danville, PA 17822, USA.
Trends Biochem Sci. 2010 Nov;35(11):627-33. doi: 10.1016/j.tibs.2010.05.010. Epub 2010 Jul 2.
Metazoans have evolved several pathways to regulate the size of organs and ultimately that of organisms. One such pathway is known as Salvador-Warts-Hippo, or simply Hippo. Research on the Hippo pathway has grown exponentially during the past 8 years, revealing a complex signaling network. Intriguingly, within this complexity, there are levels of modularity. One level of modularity is represented by the unusually wide occurrence of the WW module in the Hippo core kinase cassette, the upstream regulatory components and the downstream nuclear proteins. We suggest that the prevalence of WW domain-mediated complexes in the Hippo pathway should facilitate its molecular analysis and aid prediction of new pathway components.
后生动物进化出了几种途径来调节器官的大小,最终调节生物的大小。其中一种途径被称为 Salvador-Warts-Hippo 途径,简称 Hippo 途径。在过去的 8 年中,Hippo 途径的研究呈指数级增长,揭示了一个复杂的信号网络。有趣的是,在这种复杂性中,存在着模块性的层次。模块性的一个层次是 WW 模块在 Hippo 核心激酶盒、上游调节成分和下游核蛋白中异常广泛的出现。我们认为,Hippo 途径中 WW 结构域介导的复合物的普遍性应该有助于其分子分析,并有助于预测新的途径成分。