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Mycobacterium smegmatis d-Alanine Racemase Mutants Are Not Dependent on d-Alanine for Growth

机译:耻垢分枝杆菌d-丙氨酸消旋酶突变体不依赖于d-丙氨酸的生长

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Mycobacterium smegmatis is a fast-growing nonpathogenic species particularly useful in studying basic cellular processes of relevance to pathogenic mycobacteria. This study focused on the d-alanine racemase gene (alrA), which is involved in the synthesis of d-alanine, a basic component of peptidoglycan that forms the backbone of the cell wall. M. smegmatis alrA null mutants were generated by homologous recombination using a kanamycin resistance marker for insertional inactivation. Mutants were selected on Middlebrook medium supplemented with 50 mM d-alanine and 20 μg of kanamycin per ml. These mutants were also able to grow in standard and minimal media without d-alanine, giving rise to colonies with a drier appearance and more-raised borders than the wild-type strain. The viability of the mutants and independence of d-alanine for growth indicate that inactivation of alrA does not impose an auxotrophic requirement for d-alanine, suggesting the existence of a new pathway of d-alanine biosynthesis in M. smegmatis. Biochemical analysis demonstrated the absence of any detectable d-alanine racemase activity in the mutant strains. In addition, the alrA mutants displayed hypersusceptibility to the antimycobacterial agent d-cycloserine. The MIC of d-cycloserine for the mutant strain was 2.56 μg/ml, 30-fold less than that for the wild-type strain. Furthermore, this hypersusceptibility was confirmed by the bactericidal action of d-cycloserine on broth cultures. The kinetic of killing for the mutant strain followed the same pattern as that for the wild-type strain, but at a 30-fold-lower drug concentration. This effect does not involve a change in the permeability of the cell wall by this drug and is consistent with the identification of d-alanine racemase as a target of d-cycloserine. This outcome is of importance for the design of novel antituberculosis drugs targeting peptidoglycan biosynthesis in mycobacteria.
机译:耻垢分枝杆菌是一种快速生长的非致病性物种,在研究与致病性分枝杆菌相关的基本细胞过程中特别有用。这项研究的重点是d-丙氨酸消旋酶基因(alrA),它参与d-丙氨酸的合成,d-丙氨酸是肽聚糖的基本成分,构成细胞壁的骨架。使用卡那霉素抗性标记用于插入失活,通过同源重组产生耻垢分枝杆菌alrA无效突变体。在每毫升补充有50 mM d-丙氨酸和20μg卡那霉素的Middlebrook培养基上选择突变体。这些突变体还能够在没有d-丙氨酸的标准培养基和基本培养基中生长,从而使菌落的外观比野生型菌株更干燥,边界更高。突变体的活力和d-丙氨酸的生长独立性表明,alrA的失活不会对d-丙氨酸产生营养缺陷的要求,这表明耻垢分枝杆菌中存在d-丙氨酸生物合成的新途径。生化分析表明在突变菌株中不存在任何可检测的d-丙氨酸消旋酶活性。此外,alrA突变体显示出对抗分枝杆菌药物d-环丝氨酸的高度敏感性。突变菌株的d-环丝氨酸MIC为2.56μg/ ml,比野生型菌株低30倍。此外,d-环丝氨酸对肉汤培养物的杀菌作用证实了这种高敏感性。突变菌株的杀灭动力学遵循与野生型菌株相同的模式,但药物浓度降低了30倍。该作用不涉及该药物改变细胞壁的通透性,并且与将d-丙氨酸消旋酶鉴定为d-环丝氨酸的靶标相一致。这一结果对于设计针对分枝杆菌中肽聚糖生物合成的新型抗结核药物具有重要意义。

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