Mycobacterium tuberculosis curli pili (MTP) deficiency is associated with alterations in cell wall biogenesis, fatty acid metabolism and amino acid synthesis.

S Ashokcoomar, K S Reedoy, S Senzani, D T Loots, D Beukes, M van Reenen, B Pillay, M Pillay
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引用次数: 5

Abstract

Introduction: In an effort to find alternative therapeutic interventions to combat tuberculosis, a better understanding of the pathophysiology of Mycobacterium tuberculosis is required. The Mycobacterium tuberculosis curli pili (MTP) adhesin, present on the surface of this pathogen, has previously been shown using functional genomics and global transcriptomics, to play an important role in establishing infection, bacterial aggregation, and modulating host response in vitro and in vivo.

Objective: This investigation aimed to determine the role of MTP in modulating the metabolism of M. tuberculosis, using mtp gene-knockout mutant and complemented strains.

Methods: Untargeted two-dimensional gas chromatography time-of-flight mass spectrometry, and bioinformatic analyses, were used to identify significant differences in the metabolite profiles among the wild-type, ∆mtp mutant and mtp-complemented strains, and validated with results generated by real-time quantitative PCR.

Results: A total of 28 metabolites were found to be significantly altered when comparing the ∆mtp mutant and the wild-type strains indicating a decreased utilisation of metabolites in cell wall biogenesis, a reduced efficiency in the breakdown of fatty acids, and decreased amino acid biosynthesis in the former strain. Comparison of the wild-type to mtp-complement, and ∆mtp to mtp-complemented strains revealed 10 and 16 metabolite differences, respectively. Real-time quantitative PCR results supported the metabolomics findings. Complementation of the ∆mtp mutant resulted in a partial restoration of MTP function.

Conclusion: The lack of the MTP adhesin resulted in various bacterial cell wall alterations and related metabolic changes. This study highlights the importance of MTP as a virulence factor and further substantiates its potential use as a suitable biomarker for the development of diagnostic tools and intervention therapeutics against TB.

结核分枝杆菌卷曲毛(MTP)缺乏与细胞壁生物发生、脂肪酸代谢和氨基酸合成的改变有关。
在努力寻找替代治疗干预措施,以对抗结核病,更好地了解结核分枝杆菌的病理生理是必要的。结核分枝杆菌(Mycobacterium tuberculosis curli pili, MTP)黏附素存在于该病原体表面,此前已通过功能基因组学和全球转录组学证明,在体外和体内建立感染、细菌聚集和调节宿主反应中发挥重要作用。目的:利用MTP基因敲除突变株和互补株,研究MTP在结核分枝杆菌代谢中的作用。方法:采用非靶向二维气相色谱-飞行时间质谱法和生物信息学分析方法,鉴定野生型、∆mtp突变型和mtp补充型菌株之间代谢物谱的显著差异,并用实时定量PCR结果进行验证。结果:在比较∆mtp突变株和野生型菌株时,共发现28种代谢物发生了显著改变,这表明前者菌株对细胞壁生物生成的代谢物利用率降低,脂肪酸分解效率降低,氨基酸生物合成减少。野生型与mtp-补体、∆mtp与mtp-补体的代谢物差异分别为10和16。实时定量PCR结果支持代谢组学的发现。补充∆mtp突变体导致mtp功能部分恢复。结论:MTP黏附素的缺乏导致了细菌细胞壁的各种改变和相关的代谢变化。这项研究强调了MTP作为一种毒力因子的重要性,并进一步证实了它作为一种合适的生物标志物的潜在用途,可用于开发结核病的诊断工具和干预疗法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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