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Study of the Rifampin Monoresistance Mechanism in Mycobacterium tuberculosis

机译:利福平在结核分枝杆菌中的单药耐药机制研究

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摘要

Rifampin (RIF) susceptibility is a key factor in determining the treatment effectiveness of the standardized treatment regimens. In Mycobacterium tuberculosis, both target gene mutation and the efflux pump play major roles in the resistance to antituberculosis drugs. By eliminating RIF-resistant strains with rpoB mutation, the choice of RIF-monoresistant strains may allow us to identify the RIF-specific efflux pump genes. This study explored the RIF monoresistance mechanism in M. tuberculosis. Data from DNA sequencing and MIC measurements revealed that specific mutations, including Ser531Leu and His526Asp in RpoB, show high-level drug resistance. Three-dimensional structure modeling provided further evidence that the affinity between RIF and RpoB mutants was in accordance with the drug resistance level of the corresponding isolates. Furthermore, transcription-level analysis among the nonmutated isolates indicated that three efflux pumps (Rv0783, Rv2936, and Rv0933) might be involved in exporting RIF from the cell. Compared to 8 μg/ml for wild-type Escherichia coli, the MICs for the transgenic E. coli strains with either Rv0783 or Rv2936 were 32 and 16 μg/ml, respectively. In conclusion, our study indicated that several RpoB mutant types, including Ser531Leu and His526Asp, show high-level RIF resistance attributed to low affinity between RpoB mutant proteins and RIF. In addition, this work demonstrates that Rv2936 and Rv0783 may be responsible for low-level resistance to RIF by exporting RIF from cells. The predicted structure of RpoB and the newly identified efflux pumps in this study will provide a novel approach to design new drugs and develop novel diagnosis technologies.
机译:利福平(RIF)敏感性是确定标准化治疗方案治疗效果的关键因素。在结核分枝杆菌中,靶基因突变和外排泵均在抗结核药物的耐药性中起主要作用。通过消除具有rpoB突变的RIF耐药菌株,选择RIF单抗菌株可以使我们鉴定RIF特异性外排泵基因。本研究探讨了结核分枝杆菌的RIF单抗机制。来自DNA测序和MIC测量的数据表明,RpoB中的特定突变(包括Ser531Leu和His526Asp)显示出高水平的耐药性。三维结构建模提供了进一步的证据,表明RIF和RpoB突变体之间的亲和力与相应菌株的耐药水平一致。此外,未突变分离物之间的转录水平分析表明,三个外排泵(Rv0783,Rv2936和Rv0933)可能参与了从细胞中输出RIF。与野生型大肠杆菌的8μg/ ml相比,具有Rv0783或Rv2936的转基因大肠杆菌菌株的MIC分别为32和16μg/ ml。总之,我们的研究表明,几种RpoB突变体类型(包括Ser531Leu和His526Asp)显示出高水平的RIF耐药性,这归因于RpoB突变体蛋白与RIF之间的亲和力低。此外,这项工作证明Rv2936和Rv0783可能通过从细胞中输出RIF来引起对RIF的低水平抗性。 RpoB的预测结构和本研究中新发现的外排泵将为设计新药和开发新的诊断技术提供一种新颖的方法。

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