Bélanger François, Baigude Huricha, Rana Tariq M
Department of Biochemistry and Molecular Pharmacology, University of Massachusetts Medical School, 364 Plantation Street, Worcester, MA 01605-2324, USA.
J Mol Biol. 2009 Mar 6;386(4):1094-107. doi: 10.1016/j.jmb.2009.01.015.
Eukaryotic transcription by RNA polymerase II is a highly regulated process and divided into three major steps: initiation, elongation, and termination. Each step of transcription is controlled by a number of cellular factors. Positive transcription factor b, P-TEFb, is composed of cyclin-dependent kinase 9 and a regulatory cyclin (T1/T2). P-TEFb promotes transcriptional elongation of RNA polymerase II by using the catalytic function of CDK9 to phosphorylate various substrates during transcription. P-TEFb is inactivated by sequestration in a complex with the Hexim1 protein and 7SK RNA. The structure of this inactive P-TEFb complex and the mechanisms controlling its equilibrium with the active complex are poorly understood. Here, we used a photoactive nucleotide, 4-thioU, to study the interactions between 7SK RNA and Hexim1. We identified a specific cross-link between nucleotide U30 of 7SK RNA and amino acids 210-220 of Hexim1, in the context of both a minimal RNA-binding site and a fully reconstituted 7SK/Hexim1/P-TEFb ribonucleoprotein complex. We show also that a minimal 7SK RNA hairpin comprising nucleotides 24-87 can bind specifically to Hexim1 in vivo. Our results demonstrate directly that the Hexim1 binding site is located in the 24-87 region of 7SK RNA and that the protein residues outside the basic domain of Hexim1 are involved in specific RNA interactions.
RNA聚合酶II介导的真核转录是一个高度受调控的过程,分为三个主要步骤:起始、延伸和终止。转录的每个步骤都由许多细胞因子控制。正性转录因子b,即P-TEFb,由细胞周期蛋白依赖性激酶9和一种调节性细胞周期蛋白(T1/T2)组成。P-TEFb通过利用CDK9的催化功能在转录过程中磷酸化各种底物来促进RNA聚合酶II的转录延伸。P-TEFb通过与Hexim1蛋白和7SK RNA形成复合物而被隔离失活。这种无活性的P-TEFb复合物的结构以及控制其与活性复合物平衡的机制尚不清楚。在这里,我们使用了一种光活性核苷酸4-硫代尿嘧啶(4-thioU)来研究7SK RNA与Hexim1之间的相互作用。在最小RNA结合位点和完全重构的7SK/Hexim1/P-TEFb核糖核蛋白复合物的背景下,我们确定了7SK RNA的核苷酸U30与Hexim1的210-220位氨基酸之间的特异性交联。我们还表明,包含核苷酸24-87的最小7SK RNA发夹在体内可以特异性结合Hexim1。我们的结果直接证明,Hexim1结合位点位于7SK RNA的24-87区域,并且Hexim1碱性结构域之外的蛋白质残基参与了特异性RNA相互作用。