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Biochemical Methods to Characterize RNA Polymerase II Elongation Complexes

机译:表征RNA聚合酶II延伸复合物的生化方法

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摘要

Transcription of DNA into RNA is critical for all life, and RNA polymerases are enzymes tasked with this activity. In eukaryotes, RNA Polymerase II (RNAPII) is responsible for transcription of all protein coding genes and many non-coding RNAs. RNAPII carries out the remarkable feat of unwinding the stable double-stranded DNA template, synthesizing the transcript and re-forming the double helix behind it with great precision and speed. In vitro, RNAPII is capable of carrying out templated RNA chain elongation in the absence of any accessory proteins. However, in cells, the transcription of genes is influenced by several factors, including DNA structure, chromatin, co-transcriptional processes, and DNA binding proteins, which impede the smooth progression of RNAPII down the template. Many transcription elongation proteins have evolved to mitigate the complications and barriers encountered by polymerase during transcription. Many of these elongation factors physically interact with components of the RNAPII elongation complex, including the growing RNA transcript and the DNA template entering and exiting RNAPII. To better understand how transcription elongation factors (EFs) regulate RNAPII, elegant methods are required to probe the structure of the elongation complex. Here, we describe a collection of biochemical assays to interrogate the structure of the RNAPII elongation complex of Saccharomyces cerevisiae that are capable of providing insights into the function of EFs and the elongation process.
机译:将DNA转录为RNA对于整个生命都是至关重要的,RNA聚合酶是具有这种活性的酶。在真核生物中,RNA聚合酶II(RNAPII)负责所有蛋白质编码基因和许多非编码RNA的转录。 RNAPII具有显着的壮举,可解开稳定的双链DNA模板,合成转录本,并以极高的精度和速度重新形成其背后的双螺旋。在体外,RNAPII能够在不存在任何辅助蛋白的情况下进行模板化的RNA链延长。但是,在细胞中,基因的转录受多种因素的影响,包括DNA结构,染色质,共转录过程和DNA结合蛋白,这些都阻碍了RNAPII顺着模板顺利进行。已经开发出许多转录延伸蛋白来减轻聚合酶在转录过程中遇到的复杂性和障碍。这些延伸因子中的许多都与RNAPII延伸复合物的成分发生物理相互作用,包括不断增长的RNA转录本以及进入和流出RNAPII的DNA模板。为了更好地理解转录延伸因子(EFs)如何调节RNAPII,需要采用优雅的方法来探测延伸复合物的结构。在这里,我们描述了一组生化分析方法,以询问酿酒酵母RNAPII延伸复合物的结构,这些结构能够提供有关EF功能和延伸过程的见解。

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