Orlicky S M, Tran P T, Sayre M H, Edwards A M
Banting and Best Department of Medical Research and Department of Medical Genetics and Microbiology, C. H. Best Institute, University of Toronto, Ontario M5G 1L6, Canada.
J Biol Chem. 2001 Mar 30;276(13):10097-102. doi: 10.1074/jbc.M003165200. Epub 2000 Nov 21.
The Rpb4 and Rpb7 subunits of yeast RNA polymerase II form a heterodimeric complex essential for promoter-directed transcription initiation in a reconstituted system. Results of template competition experiments indicate that the Rpb4-Rpb7 complex is not required for stable recruitment of polymerase to active preinitiation complexes, suggesting that Rpb4-Rpb7 mediates an essential step subsequent to promoter binding. Sequence and structure-based alignments revealed a possible OB-fold single-strand nucleic acid-binding motif in Rpb7. Purified Rpb4-Rpb7 complex exhibited both single-strand DNA- and RNA-binding activities, and a small deletion in the putative OB-fold nucleic acid-binding surface of Rpb7 abolished binding activity without affecting the stability of the Rpb4-Rpb7 complex or its ability to associate with polymerase. The same mutation destroyed the transcription activity of the Rpb4-Rpb7 complex. A separate deletion elsewhere in the OB-fold motif of Rpb7 also blocked transcription but did not affect nucleic acid binding, suggesting that the OB-fold of Rpb7 mediates both DNA-protein and protein-protein interactions required for productive initiation.
酵母RNA聚合酶II的Rpb4和Rpb7亚基形成一个异二聚体复合物,该复合物对于在重组系统中启动子导向的转录起始至关重要。模板竞争实验结果表明,聚合酶稳定募集到活性起始前复合物不需要Rpb4-Rpb7复合物,这表明Rpb4-Rpb7介导了启动子结合之后的一个关键步骤。基于序列和结构的比对揭示了Rpb7中一个可能的OB折叠单链核酸结合基序。纯化的Rpb4-Rpb7复合物表现出单链DNA和RNA结合活性,并且Rpb7假定的OB折叠核酸结合表面的一个小缺失消除了结合活性,而不影响Rpb4-Rpb7复合物的稳定性或其与聚合酶结合的能力。相同的突变破坏了Rpb4-Rpb7复合物的转录活性。Rpb7的OB折叠基序中其他位置的一个单独缺失也阻断了转录,但不影响核酸结合,这表明Rpb7的OB折叠介导了有效起始所需的DNA-蛋白质和蛋白质-蛋白质相互作用。