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Tween 80 induces a carbon flux rerouting in Mycobacterium tuberculosis

机译:吐温80诱导结核分枝杆菌中的碳通量重新定位

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As a means to increase the growth rate and reduce aggregation, Tween 80 is routinely added to growth media during mycobacterial culturing. This detergent has, however, been associated with causing alterations to the morphology, pathogenicity and virulence of these bacteria. In an attempt to better understand the underlying mechanism of these alterations, we investigated the effect of Tween 80 on the metabolomes of a M. tuberculosis lab strain (H37Rv) and multidrug-resistant clinical strain (R179), using GC-GCxTOF-MS metabolomics. The metabolite markers identified indicated Tween 80-induced disparities in the central carbon metabolism of both strains, with an upregulation in the glyoxylate cycle, glucogenogenesis and the pentose phosphate pathway. The results also signified an increased production of mycobacterial biosynthetic precursors such as triacylglycerols, proteinogenic amino acids and nucleotide precursors, in the presence of the detergent. Collectively, these metabolome variations mimic the phenotypic changes observed when M. tuberculosis is grown in vivo, in a lipid rich environment. However, in addition to the increased availability of oleic acid as a carbon source from Tween 80, the observed variations, and the morphological changes associated with the detergent, could also be a result of an overall stress response in these bacteria. This study is the first to identify specific metabolome variations related to the addition of Tween 80 to the growth media during M. tuberculosis culturing. The consideration of these results during the method development and data interpretation phases of future metabolomics investigations will improve the quality of the analyses as well as the credibility of potential research outcomes. These results will also assist in the interpretation of research questions specifically aimed at aspects of mycobacterial metabolism, even when using other methodologies such as transcriptomics or fluxomics.
机译:作为提高生长速率和减少聚集的手段,在分枝杆菌培养期间常规将吐温80常常向生长培养基中添加到生长培养基中。然而,这种洗涤剂与导致这些细菌的形态,致病性和毒力的改变有关。为了更好地了解这些改变的潜在机制,我们研究了使用GC-GCXTOF-MS代谢物学对M.结核病实验室菌株(H37RV)和多药物抗性临床菌株(R179)的M.Teve的影响。鉴定的代谢物标记表明,在两种菌株的中央碳代谢中表明吐温80-诱导的差异,在乙氧化羧酸酯周期,葡糖苷发生和戊糖磷酸途径中具有上调。结果还意味着在洗涤剂存在下增加了三酰基甘油,蛋白质氨基酸和核苷酸前体的分枝杆菌生物合成前体的产量增加。总的来说,这些代谢物变化模拟了在脂质富含环境中在体内生长结核病时观察到的表型变化。然而,除了从吐温80的碳源增加油酸的可用性之外,观察到的变化和与洗涤剂相关的形态学变化也可能是这些细菌中的整体应激反应的结果。本研究是第一个识别与在培养的结核病培养期间与生长介质添加到生长介质相关的特定代谢变异。在未来的代谢组科调查的方法开发和数据解释阶段考虑这些结果将提高分析的质量以及潜在研究结果的可信度。这些结果还将有助于解释专门针对分枝杆菌代谢的方面的研究问题,即使使用其他方法如转录组织或血齿病。

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