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CBR antimicrobials alter coupling between the bridge helix and the β subunit in RNA polymerase

机译:CBR抗菌剂改变RNA聚合酶中桥螺旋和β亚基之间的偶联

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摘要

Bacterial RNA polymerase (RNAP) is a validated target for antibacterial drugs. CBR703 series antimicrobials allosterically inhibit transcription by binding to a conserved α helix ( β′ bridge helix, BH) that interconnects the two largest RNAP subunits. Here we show that disruption of the BH- β subunit contacts by amino-acid substitutions invariably results in accelerated catalysis, slowed-down forward translocation and insensitivity to regulatory pauses. CBR703 partially reverses these effects in CBR-resistant RNAPs while inhibiting catalysis and promoting pausing in CBR-sensitive RNAPs. The differential response of variant RNAPs to CBR703 suggests that the inhibitor binds in a cavity walled by the BH, the β′ F-loop and the β fork loop. Collectively, our data are consistent with a model in which the β subunit fine tunes RNAP elongation activities by altering the BH conformation, whereas CBRs deregulate transcription by increasing coupling between the BH and the β subunit .
机译:细菌RNA聚合酶(RNAP)是抗菌药物的有效靶标。 CBR703系列抗菌剂通过与两个最大的RNAP亚基相互连接的保守α螺旋(β'桥螺旋,BH)结合而变构抑制转录。在这里,我们表明,氨基酸取代对BH-β亚基的接触破坏总是导致催化加速,正向移位减慢以及对调节暂停不敏感。 CBR703可部分逆转抗CBR的RNA干扰中的这些作用,同时抑制CBR敏感性RNA的催化作用并促进停顿。变体RNAP对CBR703的差异反应表明,抑制剂结合在由BH,β'F环和β叉环围成的腔中。总体而言,我们的数据与一个模型一致,在该模型中,β亚基通过改变BH构象来微调RNAP延伸活性,而CBR通过增加BH与β亚基之间的偶联来调节转录。

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