Garbett Damien, Bretscher Anthony
Department of Molecular Biology and Genetics, Weill Institute for Cell and Molecular Biology, Cornell University, Ithaca, NY 14853.
Department of Molecular Biology and Genetics, Weill Institute for Cell and Molecular Biology, Cornell University, Ithaca, NY 14853
Mol Biol Cell. 2014 Aug 15;25(16):2315-9. doi: 10.1091/mbc.E14-04-0878.
The function of scaffolding proteins is to bring together two or more proteins in a relatively stable configuration, hence their name. Numerous scaffolding proteins are found in nature, many having multiple protein-protein interaction modules. Over the past decade, examples of scaffolding complexes long thought to be stable have instead been found to be surprisingly dynamic. These studies are scattered among different biological systems, and so the concept that scaffolding complexes might not always represent stable entities and that their dynamics can be regulated has not garnered general attention. We became aware of this issue in our studies of a scaffolding protein in microvilli, which forced us to reevaluate its contribution to their structure. The purpose of this Perspective is to draw attention to this phenomenon and discuss why complexes might show regulated dynamics. We also wish to encourage more studies on the dynamics of "stable" complexes and to provide a word of caution about how functionally important dynamic associations may be missed in biochemical and proteomic studies.
支架蛋白的功能是将两种或更多种蛋白质以相对稳定的构型聚集在一起,因此得名。自然界中发现了许多支架蛋白,其中许多具有多个蛋白质-蛋白质相互作用模块。在过去十年中,人们发现长期以来被认为稳定的支架复合物实际上出人意料地具有动态性。这些研究分散在不同的生物系统中,因此支架复合物可能并不总是代表稳定实体且其动态性可被调节这一概念尚未得到广泛关注。我们在对微绒毛中的一种支架蛋白的研究中意识到了这个问题,这迫使我们重新评估它对微绒毛结构的贡献。本观点文章的目的是提请人们关注这一现象,并讨论复合物为何可能表现出受调节的动态性。我们还希望鼓励更多关于“稳定”复合物动态性的研究,并就生物化学和蛋白质组学研究中可能错过功能重要的动态关联一事提出警示。