Meka Hedije, Werner Finn, Cordell Suzanne C, Onesti Silvia, Brick Peter
Department of Biological Sciences, Imperial College London, SW7 2BW, UK.
Nucleic Acids Res. 2005 Nov 10;33(19):6435-44. doi: 10.1093/nar/gki945. Print 2005.
The Rpb4 and Rpb7 subunits of eukaryotic RNA polymerase II (RNAP(II)) form a heterodimer that protrudes from the 10-subunit core of the enzyme. We have obtained crystals of the human Rpb4/Rpb7 heterodimer and determined the structure to 2.7 A resolution. The presence of putative RNA-binding domains on the Rpb7 subunit and the position of the heterodimer close to the RNA exit groove in the 12 subunit yeast polymerase complex strongly suggests a role for the heterodimer in binding and stabilizing the nascent RNA transcript. We have complemented the structural analysis with biochemical studies directed at dissecting the RNA-binding properties of the human Rpb4/Rpb7 complex and that of the homologous E/F complex from Methanocaldococcus jannaschii. A number of conserved, solvent-exposed residues in both the human Rpb7 subunit and the archaeal E subunit have been modified by site-directed mutagenesis and the mutants tested for RNA binding by performing electrophoretic mobility shift assays. These studies have identified an elongated surface region on the corresponding face of both subunit E and Rpb7 that is involved in RNA binding. The area spans the nucleic acid binding face of the OB fold, including the B4-B5 loop, but also extends towards the N-terminal domain.
真核生物RNA聚合酶II(RNAP(II))的Rpb4和Rpb7亚基形成一个异源二聚体,该异源二聚体从该酶的10亚基核心突出。我们获得了人Rpb4/Rpb7异源二聚体的晶体,并将其结构解析到2.7埃的分辨率。Rpb7亚基上存在推定的RNA结合结构域,以及该异源二聚体在12亚基酵母聚合酶复合物中靠近RNA出口槽的位置,强烈表明该异源二聚体在结合和稳定新生RNA转录本中发挥作用。我们用生化研究补充了结构分析,这些生化研究旨在剖析人Rpb4/Rpb7复合物以及来自詹氏甲烷球菌的同源E/F复合物的RNA结合特性。通过定点诱变对人Rpb7亚基和古细菌E亚基中一些保守的、暴露于溶剂的残基进行了修饰,并通过进行电泳迁移率变动分析测试了突变体的RNA结合情况。这些研究确定了亚基E和Rpb7相应面上一个细长的表面区域,该区域参与RNA结合。该区域跨越OB折叠的核酸结合面,包括B4-B5环,但也向N端结构域延伸。