Jasiak Anna J, Armache Karim-Jean, Martens Birgit, Jansen Ralf-Peter, Cramer Patrick
Department of Chemistry and Biochemistry, Gene Center, Ludwig-Maximilians-University of Munich, Feodor-Lynen-Strasse 25, 81377 Munich, Germany.
Mol Cell. 2006 Jul 7;23(1):71-81. doi: 10.1016/j.molcel.2006.05.013.
We obtained an 11 subunit model of RNA polymerase (Pol) III by combining a homology model of the nine subunit core enzyme with a new X-ray structure of the subcomplex C17/25. Compared to Pol II, Pol III shows a conserved active center for RNA synthesis but a structurally different upstream face for specific initiation complex assembly during promoter selection. The Pol III upstream face includes a HRDC domain in subunit C17 that is translated by 35 A and rotated by 150 degrees compared to its Pol II counterpart. The HRDC domain is essential in vivo, folds independently in vitro, and, unlike other HRDC domains, shows no indication of nucleic acid binding. Thus, the HRDC domain is a functional module that could account for the role of C17 in Pol III promoter-specific initiation. During elongation, C17/25 may bind Pol III transcripts emerging from the adjacent exit pore, because the subcomplex binds to tRNA in vitro.
我们通过将九亚基核心酶的同源模型与亚复合物C17/25的新X射线结构相结合,获得了RNA聚合酶(Pol)III的11亚基模型。与Pol II相比,Pol III显示出用于RNA合成的保守活性中心,但在启动子选择期间用于特定起始复合物组装的上游面在结构上有所不同。Pol III上游面在亚基C17中包含一个HRDC结构域,与其Pol II对应物相比,该结构域平移了35 Å并旋转了150度。HRDC结构域在体内是必需的,在体外独立折叠,并且与其他HRDC结构域不同,没有显示出核酸结合的迹象。因此,HRDC结构域是一个功能模块,可以解释C17在Pol III启动子特异性起始中的作用。在延伸过程中,C17/25可能结合从相邻出口孔出现的Pol III转录本,因为该亚复合物在体外与tRNA结合。