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首页> 外文期刊>BMC Microbiology >The Mycobacterium marinum mel2 locus displays similarity to bacterial bioluminescence systems and plays a role in defense against reactive oxygen and nitrogen species
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The Mycobacterium marinum mel2 locus displays similarity to bacterial bioluminescence systems and plays a role in defense against reactive oxygen and nitrogen species

机译:海水分枝杆菌mel2基因座显示与细菌生物发光系统相似,并在防御活性氧和氮物种中发挥作用

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Mycobacteria have developed a number of pathways that provide partial protection against both reactive oxygen species (ROS) and reactive nitrogen species (RNS). We recently identified a locus in Mycobacterium marinum, mel2, that plays a role during infection of macrophages. The molecular mechanism of mel2 action is not well understood. To better understand the role of the M. marinum mel2 locus, we examined these genes for conserved motifs in silico. Striking similarities were observed between the mel2 locus and loci that encode bioluminescence in other bacterial species. Since bioluminescence systems can play a role in resistance to oxidative stress, we postulated that the mel2 locus might be important for mycobacterial resistance to ROS and RNS. We found that an M. marinum mutant in the first gene in this putative operon, melF, confers increased susceptibility to both ROS and RNS. This mutant is more susceptible to ROS and RNS together than either reactive species alone. These observations support a role for the M. marinum mel2 locus in resistance to oxidative stress and provide additional evidence that bioluminescence systems may have evolved from oxidative defense mechanisms.
机译:分枝杆菌已经开发出许多途径,它们提供了针对活性氧(ROS)和活性氮(RNS)的部分保护。我们最近在海分枝杆菌mel2中发现了一个在巨噬细胞感染过程中起作用的基因座。 mel2作用的分子机理尚不清楚。为了更好地了解海藻分枝杆菌mel2基因座的作用,我们检查了这些基因在计算机上的保守基序。在其他细菌物种中,mel2基因座和编码生物发光的基因座之间观察到惊人的相似性。由于生物发光系统可以在抗氧化应激中发挥作用,因此我们假设mel2基因座可能对分枝杆菌对ROS和RNS的抗性很重要。我们发现该推定操纵子melF的第一个基因中的海藻分枝杆菌突变体增加了对ROS和RNS的敏感性。该突变体比单独的任何一种反应物种更容易受到ROS和RNS的影响。这些观察结果支持了M. marinum mel2基因座在抗氧化胁迫中的作用,并提供了其他证据表明生物发光系统可能已经从氧化防御机制演变而来。

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