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Minimalism and functionality: Structural lessons from the heterodimeric N4 bacteriophage RNA polymerase II

机译:极简主义和功能性:异源二聚N4噬菌体RNA聚合酶II的结构课程

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摘要

Genomes of phages, mitochondria, and chloroplasts are transcribed by a diverse group of transcriptional machineries with structurally related single-subunit RNA polymerases (RNAPs). Our understanding of transcription mechanisms of these enzymes is predominantly based on biochemical and structural studies of three most-studied members, transcription factor–independent phage T7 RNAP, transcription factor–dependent phage N4 virion-encapsidated RNAP, and transcription factor–dependent mitochondrial RNAPs (mtRNAP). Although these RNAPs employ completely different mechanisms for promoter recognition and transcription termination, these enzymes are relatively large and formed by single polypeptides. Historically being a model enzyme for studying the mechanisms of transcription by T7-like RNAPs, however, T7 RNAP represents only a small group of RNAPs in this family. The vast majority of T7-like RNAPs are transcription factor–dependent, and several of them are heterodimeric enzymes. Here, we report X-ray crystal structures of transcription complexes of the smallest and heterodimeric form of T7-like RNAP, bacteriophage N4 RNAPII, providing insights into the structural organization of a minimum RNAP in this family. We analyze structural and functional aspects of heterodimeric architecture of N4 RNAPII concerning the mechanisms of transcription initiation and transition to processive RNA elongation. Interestingly, N4 RNAPII maintains the same conformation in promoter-bound and elongation transcription complexes, revealing a novel transcription mechanism for single-subunit RNAPs. This work establishes a structural basis for studying mechanistic aspects of transcription by factor-dependent minimum RNAP.
机译:噬菌体,线粒体和叶绿体的基因组由具有结构相关的单亚基RNA聚合酶(RNAP)的多种转录机制转录。我们对这些酶的转录机制的理解主要基于对三个研究最多的成员的生化和结构研究,即不依赖转录因子的噬菌体T7 RNAP,依赖转录因子的噬菌体N4病毒体包裹的RNAP和依赖转录因子的线粒体RNAP( mtRNAP)。尽管这些RNAP在启动子识别和转录终止中采用了完全不同的机制,但这些酶相对较大,由单个多肽形成。从历史上讲,T7 RNAP是研究T7样RNAP转录机制的模型酶,但在该家族中仅代表一小部分RNAP。绝大多数T7样RNAP是依赖转录因子的,其中一些是异二聚酶。在这里,我们报告最小和异二聚体形式的T7样RNAP,噬菌体N4 RNAPII的转录复合物的X射线晶体结构,从而为该家族中最小RNAP的结构组织提供了见识。我们分析了N4 RNAPII异二聚体结构的结构和功能方面,涉及转录起始和过渡到进行性RNA延长的机制。有趣的是,N4 RNAPII在启动子结合和延伸的转录复合物中保持相同的构象,揭示了单亚基RNAP的新型转录机制。这项工作为研究因子依赖性最小RNAP转录机制方面奠定了结构基础。

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