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首页> 外文期刊>BioMed research international >The Structural Modeling of the Interaction between Levofloxacin and theMycobacterium tuberculosisGyrase Catalytic Site Sheds Light on the Mechanisms of Fluoroquinolones Resistant Tuberculosis in Colombian Clinical Isolates
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The Structural Modeling of the Interaction between Levofloxacin and theMycobacterium tuberculosisGyrase Catalytic Site Sheds Light on the Mechanisms of Fluoroquinolones Resistant Tuberculosis in Colombian Clinical Isolates

机译:左氧氟沙星与结核分枝杆菌相互作用的结构模型回旋酶催化位点揭示了哥伦比亚临床分离株对氟喹诺酮类药物耐药结核的机理

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摘要

We compared the prevalence of levofloxacin (LVX) resistance with that of ofloxacin (OFX) and moxifloxacin (MFX) among multidrug resistant (MDR)MTBclinical isolates collected in Medellin, Colombia, between 2004 and 2009 and aimed at unraveling the underlying molecular mechanisms that explain the correlation between QRDR-A mutations and LVX resistance phenotype. We tested 104 MDR isolates for their susceptibility to OFX, MFX, and LVX. Resistance to OFX was encountered in 10 (9.6%) of the isolates among which 8 (7.7%) were also resistant to LVX and 6 (5.7%) to MFX. Four isolates resistant to the 3 FQ were harboring the Asp94Gly substitution, whilst 2 other isolates resistant to OFX and LVX presented the Ala90Val mutation. No mutations were found in the QRDR-B region. The molecular modeling of the interaction between LVX and the DNA-DNA gyrase complex indicates that the loss of an acetyl group in the Asp94Gly mutation removes the acid base interaction with LVX necessary for the quinolone activity. The Ala90Val mutation that substitutes a methyl for an isopropyl group induces a steric modification that blocks the LVX access to the gyrase catalytic site.
机译:我们比较了2004年至2009年间在哥伦比亚麦德林市收集的多药耐药(MDR)MTB临床分离物中左氧氟沙星(LVX)耐药性与氧氟沙星(OFX)和莫西沙星(MFX)的患病率,旨在阐明可能的分子机制QRDR-A突变与LVX耐药表型的相关性我们测试了104种MDR分离株对OFX,MFX和LVX的敏感性。在10(9.6%)的分离物中遇到了对OFX的抗性,其中8(7.7%)的抗LVX和6(5.7%)的抗MFX。四个对3个FQ有抗性的菌株带有Asp94Gly取代,而其他2个对OFX和LVX具有抗性的菌株则出现Ala90Val突变。在QRDR-B区域未发现突变。 LVX与DNA-DNA促旋酶复合物之间相互作用的分子模型表明,Asp94Gly突变中乙酰基的丧失消除了喹诺酮活性所必需的与LVX的酸碱相互作用。将甲基取代为异丙基的Ala90Val突变诱导了位点修饰,该位点修饰阻止LVX进入回旋酶催化位点。

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