The Rockefeller University, 1230 York Avenue, New York, NY 10065, USA.
Cell. 2013 Jan 31;152(3):431-41. doi: 10.1016/j.cell.2012.12.020.
Transcriptional pausing by multisubunit RNA polymerases (RNAPs) is a key mechanism for regulating gene expression in both prokaryotes and eukaryotes and is a prerequisite for transcription termination. Pausing and termination states are thought to arise through a common, elemental pause state that is inhibitory for nucleotide addition. We report three crystal structures of Thermus RNAP elemental paused elongation complexes (ePECs). The structures reveal the same relaxed, open-clamp RNAP conformation in the ePEC that may arise by failure to re-establish DNA contacts during translocation. A kinked bridge-helix sterically blocks the RNAP active site, explaining how this conformation inhibits RNAP catalytic activity. Our results provide a framework for understanding how RNA hairpin formation stabilizes the paused state and how the ePEC intermediate facilitates termination.
多亚基 RNA 聚合酶 (RNAPs) 的转录暂停是调节原核生物和真核生物基因表达的关键机制,也是转录终止的前提。暂停和终止状态被认为是通过一个共同的、基本的暂停状态产生的,该状态对核苷酸的添加具有抑制作用。我们报告了三个 Thermus RNAP 基本暂停延伸复合物 (ePEC) 的晶体结构。这些结构揭示了 ePEC 中相同的松弛、开环 RNAP 构象,这可能是由于在易位过程中未能重新建立 DNA 接触而产生的。一个扭曲的桥螺旋阻碍了 RNAP 的活性位点,解释了这种构象如何抑制 RNAP 的催化活性。我们的结果为理解 RNA 发夹形成如何稳定暂停状态以及 ePEC 中间体如何促进终止提供了一个框架。