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AFFINITY SELECTION-MASS SPECTROMETRY IDENTIFIES A NOVEL ANTIBACTERIAL RNA POLYMERASE INHIBITOR

机译:亲和力选择质谱法鉴定新型抗菌RNA聚合酶抑制剂

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摘要

The growing prevalence of drug resistant bacteria is a significant global threat to human health. The antibacterial drug rifampin, which functions by inhibiting bacterial RNA polymerase (RNAP), is an important part of the antibacterial armamentarium. Here, in order to identify novel inhibitors of bacterial RNAP, we used affinity-selection mass spectrometry to screen a chemical library for compounds that bind to Escherichia coli RNAP. We identified a novel small molecule, MRL-436, that binds to RNAP, inhibits RNAP, and exhibits antibacterial activity. MRL-436 binds to RNAP through a binding site that differs from the rifampin binding site, inhibits rifampin-resistant RNAP derivatives, and exhibits antibacterial activity against rifampin-resistant strains. Isolation of mutants resistant to the antibacterial activity of MRL-436 yields a missense mutation in codon 622 of the rpoC gene encoding RNAP β′ subunit or a null mutation in the rpoZ gene encoding RNAP ω subunit, confirming that RNAP is the functional cellular target for the antibacterial activity of MRL-436, and indicating that RNAP β′ subunit residue 622 and RNAP ω subunit are required for the antibacterial activity of MRL-436. Similarity between the resistance determinant for MRL-436 and the resistance determinant for the cellular alarmone ppGpp suggests a possible similarity in binding site and/or induced conformational state for MRL-436 and ppGpp.
机译:耐药细菌的日益流行是对人类健康的重大全球威胁。抗菌药物利福平(rifampin)通过抑制细菌RNA聚合酶(RNAP)起作用,是抗菌武器库的重要组成部分。在这里,为了鉴定细菌RNAP的新型抑制剂,我们使用了亲和力选择质谱技术来筛选化学文库中与大肠杆菌RNAP结合的化合物。我们鉴定了一种新颖的小分子MRL-436,它与RNAP结合,抑制RNAP并表现出抗菌活性。 MRL-436通过不同于利福平结合位点的结合位点与RNAP结合,抑制耐利福平的RNAP衍生物,并表现出对耐利福平菌株的抗菌活性。分离出对MRL-436的抗菌活性有抗性的突变体,会在编码RNAPβ'亚基的rpoC基因的密码子622中产生错义突变,或者在编码RNAPω亚基的rpoZ基因中产生无效突变,从而证实RNAP是细胞功能性靶点MRL-436的抗菌活性,并表明MRL-436的抗菌活性需要RNAPβ'亚基残基622和RNAPω亚基。 MRL-436的抗性决定子与细胞警报素ppGpp的抗性决定子之间的相似性表明,MRL-436和ppGpp的结合位点和/或诱导的构象状态可能相似。

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