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基于RNA的亲和纯化揭示了具有不同组成和调控的7SK核糖核蛋白复合物。

RNA-based affinity purification reveals 7SK RNPs with distinct composition and regulation.

作者信息

Hogg J Robert, Collins Kathleen

机构信息

Department of Molecular and Cell Biology, University of California at Berkeley, Berkeley, California 94720-3200, USA.

出版信息

RNA. 2007 Jun;13(6):868-80. doi: 10.1261/rna.565207. Epub 2007 Apr 24.

Abstract

Recent studies have uncovered an unanticipated diversity of noncoding RNAs (ncRNAs), although these studies provide limited insight into their biological significance. Numerous general methods for identification and characterization of protein interactions have been developed, but similar approaches for characterizing cellular ncRNA interactions are lacking. Here we describe RNA Affinity in Tandem (RAT), an original, entirely RNA tag-based method for affinity purification of endogenously assembled RNP complexes. We demonstrate the general utility of RAT by isolating RNPs assembled in vivo on ncRNAs transcribed by RNA polymerase II or III. Using RAT in conjunction with protein identification by mass spectrometry and protein-RNA interaction assays, we define and characterize previously unanticipated protein subunits of endogenously assembled human 7SK RNPs. We show that 7SK RNA resides in a mixed population of RNPs with different protein compositions and responses to cellular stress. Depletion of a newly identified 7SK RNP component, hnRNP K, alters the partitioning of 7SK RNA among distinct RNPs. Our results establish the utility of a generalizable RNA-based RNP affinity purification method and provide insight into 7SK RNP dynamics.

摘要

最近的研究发现了非编码RNA(ncRNA)出人意料的多样性,尽管这些研究对其生物学意义的了解有限。已经开发出许多用于鉴定和表征蛋白质相互作用的通用方法,但缺乏用于表征细胞ncRNA相互作用的类似方法。在这里,我们描述了串联RNA亲和法(RAT),这是一种基于RNA标签的原始方法,用于亲和纯化内源性组装的RNP复合物。我们通过分离在体内组装在由RNA聚合酶II或III转录的ncRNA上的RNP,证明了RAT的通用性。通过将RAT与质谱法鉴定蛋白质以及蛋白质-RNA相互作用分析相结合,我们定义并表征了内源性组装的人类7SK RNP中以前未被发现的蛋白质亚基。我们表明,7SK RNA存在于具有不同蛋白质组成和对细胞应激反应的RNP混合群体中。新鉴定的7SK RNP成分hnRNP K的缺失改变了7SK RNA在不同RNP之间的分配。我们的结果确立了一种可推广的基于RNA的RNP亲和纯化方法的实用性,并为7SK RNP动力学提供了见解。

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