Institute of Molecular Genetics, Russian Academy of Sciences, Moscow 123182, Russia, Molecular Biology Department, Biological Faculty, Moscow State University, Moscow 119991 Russia, Department of Biological DNA Modification, Institute of Biotechnology, Vilnius University, Vilnius 02241, Lithuania and Department of Microbiology, The Ohio State University, Columbus, OH 43210, USA.
Nucleic Acids Res. 2014 Jan;42(1):544-52. doi: 10.1093/nar/gkt877. Epub 2013 Oct 1.
The trigger loop (TL) in the RNA polymerase (RNAP) active center plays key roles in the reactions of nucleotide addition and RNA cleavage catalyzed by RNAP. The adjacent F loop (FL) was proposed to contribute to RNAP catalysis by modulating structural changes in the TL. Here, we investigate the interplay between these two elements during transcription by bacterial RNAP. Thermodynamic analysis of catalysis by RNAP variants with mutations in the TL and FL suggests that the TL is the key element required for temperature activation in RNAP catalysis, and that the FL promotes TL transitions during nucleotide addition. We reveal characteristic differences in the catalytic parameters between thermophilic Thermus aquaticus and mesophilic Deinococcus radiodurans RNAPs and identify the FL as an adaptable element responsible for the observed differеnces. Mutations in the FL also significantly affect the rate of intrinsic RNA cleavage in a TL-dependent manner. In contrast, much weaker effects of the FL and TL mutations on GreA-assisted RNA cleavage suggest that the FL-dependent TL transitions are not required for this reaction. Thus, functional interplay between the FL and TL is essential for various catalytic activities of RNAP and plays an adaptive role in catalysis by thermophilic and mesophilic enzymes.
RNA 聚合酶 (RNAP) 活性中心的触发环 (TL) 在核苷酸添加和 RNAP 催化的 RNA 切割反应中发挥关键作用。相邻的 F 环 (FL) 通过调节 TL 中的结构变化被提出有助于 RNAP 催化。在这里,我们通过细菌 RNAP 研究这两个元件在转录过程中的相互作用。TL 和 FL 突变体 RNAP 催化的热力学分析表明,TL 是 RNAP 催化中温度激活所必需的关键元素,而 FL 在核苷酸添加过程中促进 TL 转变。我们揭示了嗜热水生栖热菌和中温辐射球菌 RNAP 之间在催化参数上的特征差异,并将 FL 确定为负责观察到的差异的适应性元件。FL 中的突变也以 TL 依赖性方式显著影响内在 RNA 切割的速率。相比之下,FL 和 TL 突变对 GreA 辅助的 RNA 切割的影响要弱得多,这表明 FL 依赖性 TL 转变不是该反应所必需的。因此,FL 和 TL 之间的功能相互作用对于 RNAP 的各种催化活性至关重要,并在嗜热和中温酶的催化中发挥适应性作用。