Department of Biochemistry, University of Wisconsin-Madison, Madison, WI 53706, USA.
Mol Cell. 2013 Jun 27;50(6):882-93. doi: 10.1016/j.molcel.2013.05.015. Epub 2013 Jun 13.
Transcriptional pausing, which regulates transcript elongation in both prokaryotes and eukaryotes, is thought to involve formation of alternative RNA polymerase conformations in which nucleotide addition is inhibited in part by restriction of trigger loop (TL) folding. The polymorphous TL must convert from a random coil to a helical hairpin that contacts the nucleotide triphosphate (NTP) substrate to allow rapid nucleotide addition. Understanding the distribution of TL conformations in different enzyme states is made difficult by the TL's small size and sensitive energetics. Here, we report a Cys-pair reporter strategy to elucidate the relative occupancies of different TL conformations in E. coli RNA polymerase based on the ability of Cys residues engineered into the TL and surrounding regions to form disulfide bonds. Our results indicate that a paused complex stabilized by a nascent RNA hairpin favors nonproductive TL conformations that persist after NTP binding but can be reversed by the elongation factor RfaH.
转录暂停,它调节原核生物和真核生物中的转录延伸,被认为涉及到形成替代 RNA 聚合酶构象,其中核苷酸的添加部分受到触发环 (TL) 折叠限制的抑制。多态性的 TL 必须从无规卷曲转变为与核苷酸三磷酸 (NTP) 底物接触的螺旋发夹,以允许快速核苷酸添加。TL 的小尺寸和敏感的能量学使得理解不同酶状态下 TL 构象的分布变得困难。在这里,我们报告了一种 Cys-对报告策略,根据工程化到 TL 和周围区域的 Cys 残基形成二硫键的能力,来阐明大肠杆菌 RNA 聚合酶中不同 TL 构象的相对占有率。我们的结果表明,由新生 RNA 发夹稳定的暂停复合物有利于非生产性 TL 构象,这些构象在 NTP 结合后仍然存在,但可以被延伸因子 RfaH 逆转。