Coller Jeffery, Wickens Marvin
Department of Biochemistry, University of Wisconsin-Madison, 53706, USA.
Methods. 2002 Feb;26(2):142-50. doi: 10.1016/S1046-2023(02)00016-6.
Proteins that regulate mRNA metabolism are often bipartite: an RNA binding activity confers substrate specificity, and a "functional" domain elicits the biological outcome. In some cases, these two activities reside on different polypeptides that form a complex on the mRNA. Regardless, experimental separation of RNA binding from function facilitates analysis of both properties, liberating each from the constraints of the other. "Tethered function" assays bring a protein to a reporter RNA through a designed RNA-protein interaction. The function of the tethered protein-whether that be stability, translation, localization, or transport, or otherwise-is then assessed. We refer to this approach as a "tethered function" assay, since it can be examined. The approach does not require knowledge of the natural RNA binding sites, or of the composition of the naturally occurring protein complexes. It can be useful in dissecting how proteins that act on RNAs work, and in identifying active components of multiprotein complexes. RNA-binding proteins previously have been linked to foreign RNA-binding specificities, for a wide variety of purposes. We emphasize here the particular value of tethering to the 3' untranslated region of eukaryotic mRNAs, and the opportunities it presents for the analysis of how those mRNAs are regulated. We discuss experimental design, as well as published and potential applications.
调节mRNA代谢的蛋白质通常是双功能的:RNA结合活性赋予底物特异性,而“功能”结构域引发生物学结果。在某些情况下,这两种活性存在于不同的多肽上,它们在mRNA上形成复合物。无论如何,将RNA结合与功能进行实验性分离有助于对这两种特性进行分析,使它们各自摆脱对方的限制。“拴系功能”分析通过设计的RNA-蛋白质相互作用将一种蛋白质带到报告RNA上。然后评估拴系蛋白的功能——无论是稳定性、翻译、定位、运输,还是其他方面。我们将这种方法称为“拴系功能”分析,因为它可以被检测。该方法不需要了解天然RNA结合位点或天然存在的蛋白质复合物的组成。它在剖析作用于RNA的蛋白质如何发挥作用以及鉴定多蛋白复合物的活性成分方面可能很有用。以前,出于各种目的,RNA结合蛋白已与外来RNA结合特异性联系起来。我们在此强调拴系到真核mRNA的3'非翻译区的特殊价值,以及它为分析这些mRNA如何被调控所带来的机会。我们讨论了实验设计以及已发表的和潜在的应用。