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Structural basis for λN-dependent processive transcription antitermination.

机译:λN依赖性进行性转录抗终止的结构基础。

摘要

λN-mediated processive antitermination constitutes a paradigmatic transcription regulatory event, during which phage protein λN, host factors NusA, NusB, NusE and NusG, and an RNA nut site render elongating RNA polymerase termination-resistant. The structural basis of the process has so far remained elusive. Here we describe a crystal structure of a λN–NusA–NusB–NusE–nut site complex and an electron cryo-microscopic structure of a complete transcription antitermination complex, comprising RNA polymerase, DNA, nut site RNA, all Nus factors and λN, validated by crosslinking/mass spectrometry. Due to intrinsic disorder, λN can act as a multiprotein/RNA interaction hub, which, together with nut site RNA, arranges NusA, NusB and NusE into a triangular complex. This complex docks via the NusA N-terminal domain and the λN C-terminus next to the RNA exit channel on RNA polymerase. Based on the structures, comparative crosslinking analyses and structure-guided mutagenesis, we hypothesize that λN mounts a multipronged strategy to reprogram the transcriptional machinery, which may include (1) the λN C terminus clamping the RNA exit channel, thus stabilizing the DNA:RNA hybrid; (2) repositioning of NusA and RNAP elements, thus redirecting nascent RNA and sequestering the upstream branch of a terminator hairpin; and (3) hindering RNA engagement of termination factor ρ and/or obstructing ρ translocation on the transcript.
机译:λN介导的进行性抗终止作用构成一个范式转录调节事件,在此过程中,噬菌体蛋白λN,宿主因子NusA,NusB,NusE和NusG以及RNA螺母位点使延长的RNA聚合酶终止抗性。到目前为止,该过程的结构基础仍然难以捉摸。在这里,我们描述了λN–NusA–NusB–NusE–螺母位点复合物的晶体结构和完整转录抗终止复合物的电子冷冻显微镜结构,包括RNA聚合酶,DNA,螺母位点RNA,所有Nus因子和λN,已验证通过交联/质谱。由于内在的紊乱,λN可以充当多蛋白/ RNA相互作用的枢纽,与螺母位点RNA一起将NusA,NusB和NusE排列成三角形复合体。该复合物通过NusA N末端结构域和λNC末端与RNA聚合酶上的RNA出口通道相邻接。基于结构,比较交联分析和结构指导的诱变,我们假设λN采取了多管齐下的策略来重新编程转录机制,其中可能包括(1)λNC末端夹住RNA出口通道,从而稳定了DNA:RNA杂种(2)重新定位NusA和RNAP元件,从而重定向新生的RNA并隔离终止子发夹的上游分支; (3)阻止RNA参与终止因子ρ和/或阻碍ρ在转录本上的易位。

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