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PNAS Plus: Structural basis of transcriptional stalling and bypass of abasic DNA lesion by RNA polymerase II

机译:PNAS Plus:RNA聚合酶II的转录停滞和无碱基DNA损伤旁路的结构基础

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摘要

Abasic sites are among the most abundant DNA lesions and interfere with DNA replication and transcription, but the mechanism of their action on transcription remains unknown. Here we applied a combined structural and biochemical approach for a comprehensive investigation of how RNA polymerase II (Pol II) processes an abasic site, leading to slow bypass of lesion. Encounter of Pol II with an abasic site involves two consecutive slow steps: insertion of adenine opposite a noninstructive abasic site (the A-rule), followed by extension of the 3′-rAMP with the next cognate nucleotide. Further studies provided structural insights into the A-rule: ATP is slowly incorporated into RNA in the absence of template guidance. Our structure revealed that ATP is bound to the Pol II active site, whereas the abasic site is located at an intermediate state above the Bridge Helix, a conserved structural motif that is cirtical for Pol II activity. The next extension step occurs in a template-dependent manner where a cognate substrate is incorporated, despite at a much slower rate compared with nondamaged template. During the extension step, neither the cognate substrate nor the template base is located at the canonical position, providing a structural explanation as to why this step is as slow as the insertion step. Taken together, our studies provide a comprehensive understanding of Pol II stalling and bypass of the abasic site in the DNA template.
机译:无碱基位点是最丰富的DNA损伤之一,会干扰DNA复制和转录,但是它们对转录的作用机制仍然未知。在这里,我们应用了结构和生化相结合的方法来全面研究RNA聚合酶II(Pol II)如何处理无碱基位点,从而导致病变的缓慢旁路。带有无碱基位点的Pol II的遭遇涉及两个连续的缓慢步骤:在非指导性无碱基位点(A规则)对面插入腺嘌呤,然后用下一个同源核苷酸延伸3'-rAMP。进一步的研究提供了对A规则的结构见解:在没有模板指导的情况下,ATP缓慢地掺入RNA中。我们的结构揭示了ATP与Pol II活性位点结合,而无碱基位点位于Bridge Helix上方的中间状态,Bridge Helix是保守的结构基序,对Pol II活性具有重要意义。下一个延伸步骤以模板依赖的方式发生,其中掺入了同源底物,尽管与未损坏的模板相比其速度要慢得多。在延伸步骤中,相关的基材或模板基体均未位于规范位置,从而提供了有关此步骤为何与插入步骤一样慢的结构说明。综上所述,我们的研究提供了对DNA模板中Pol II失速和无碱基位点旁路的全面理解。

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