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Deletion of Switch 3 Results in an Archaeal RNA Polymerase That Is Defective in Transcript Elongation*

机译:删除开关3会导致古细菌RNA聚合酶的转录延伸缺陷*

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摘要

Switch 3 is a polypeptide loop conserved in all multisubunit DNA-dependent RNA polymerases (RNAPs) that extends into the main cleft of the RNAP and contacts each base in a nascent transcript as that base is released from the internal DNA-RNA hybrid. Plasmids have been constructed and transformed into Thermococcus kodakaraensis, which direct the constitutive synthesis of the archaeal RNAP subunit RpoB with an N-terminal His6 tag and the Switch 3 loop either intact (wild-type) or deleted (ΔS3). RNAPs containing these plasmid-encoded RpoB subunits were purified, and, in vitro, the absence of Switch 3 had no negative effects on transcription initiation or elongation complex stability but reduced the rate of transcript elongation. The defect in elongation occurred at every template position and increased the sensitivity of the archaeal RNAP to intrinsic termination. Comparing these properties and those reported for a bacterial RNAP lacking Switch 3 argues that this loop functions differently in the RNAPs from the two prokaryotic domains. The close structural homology of archaeal and eukaryotic RNAPs would predict that eukaryotic Switch 3 loops likely conform to the archaeal rather than bacterial functional paradigm.
机译:开关3是在所有多亚基依赖DNA的RNA聚合酶(RNAP)中保守的多肽环,该环延伸到RNAP的主要裂口并与新生转录本中的每个碱基接触,因为该碱基从内部DNA-RNA杂种中释放出来。已经构建了质粒并将其转化到kodakaraensis嗜热球菌中,该菌指导具有N端His6标签的古细菌RNAP亚基RpoB的组成合成,并且Switch 3环完整(野生型)或缺失(ΔS3)。纯化了含有这些质粒编码的RpoB亚基的RNAP,在体外,不存在Switch 3对转录起始或延伸复合物稳定性没有负面影响,但降低了转录延伸率。伸长缺陷发生在每个模板位置,并增加了古细菌RNAP对固有终止的敏感性。将这些特性与报道的缺乏Switch 3的细菌RNAP的特性进行比较,认为该环在两个原核结构域的RNAP中的功能不同。古细菌和真核生物RNAP的紧密结构同源性将预测真核Switch 3环可能符合古细菌而不是细菌功能范式。

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