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首页> 外文期刊>Biochimica et Biophysica Acta. Gene Regulatory Mechanisms >Structural rearrangements of the RNA polymerase III machinery during tRNA transcription initiation
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Structural rearrangements of the RNA polymerase III machinery during tRNA transcription initiation

机译:TRNA转录开始期间RNA聚合酶III机械的结构重排

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摘要

RNA polymerase III catalyses the synthesis of tRNAs in eukaryotic organisms. Through combined biochemical and structural characterisation, multiple auxiliary factors have been identified alongside RNA Polymerase III as critical in both facilitating and regulating transcription. Together, this machinery forms dynamic multi-protein complexes at tRNA genes which are required for polymerase recruitment, DNA opening and initiation and elongation of the tRNA transcripts. Central to the function of these complexes is their ability to undergo multiple conformational changes and rearrangements that regulate each step. Here, we discuss the available biochemical and structural data on the structural plasticity of multi-protein complexes involved in RNA Polymerase III transcriptional initiation and facilitated re-initiation during tRNA synthesis. Increasingly, structural information is becoming available for RNA polymerase III and its functional complexes, allowing for a deeper understanding of tRNA transcriptional initiation. This article is part of a Special Issue entitled: SI: Regulation of tRNA synthesis and modification in physiological conditions and disease edited by Dr. Boguta Magdalena.
机译:RNA聚合酶III催化真核生物中TrNA的合成。通过组合生化和结构表征,已经将多种辅助因子与RNA聚合酶III鉴定为促进和调节转录的关键。该机器在一起,在TRNA基因中形成动态多蛋白复合物,该基因是聚合酶募集,DNA开启和TRNA转录物的引发和伸长率。这些复合物的功能的核心是它们能够经过多种构象变化和重排的能力来调节每个步骤。在这里,我们讨论了关于RNA聚合酶III转录引发的多蛋白复合物的结构可塑性的可用生化和结构数据,并在TRNA合成过程中促进重新启动。越来越多地,结构信息正在适用于RNA聚合酶III及其官能复合物,允许更深入地了解TRNA转录引发。本文是标题的特殊问题的一部分:Si:调节TRNA合成和在Boguta Magdalena博士编辑的生理病症和病症的修饰。

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