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A Thiolase of Mycobacterium tuberculosis Is Required for Virulence and Production of Androstenedione and Androstadienedione from Cholesterol

机译:结核分枝杆菌的硫醇酶对胆固醇的毒性和生产雄烯二酮和雄二烯二酮的作用是必需的

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摘要

Mycobacterium tuberculosis, the causative agent of tuberculosis, is an intracellular pathogen that shifts to a lipid-based metabolism in the host. Moreover, metabolism of the host lipid cholesterol plays an important role in M. tuberculosis infection. We used transcriptional profiling to identify genes transcriptionally regulated by cholesterol and KstR (Rv3574), a TetR-like repressor. The fadA5 (Rv3546) gene, annotated as a lipid-metabolizing thiolase, the expression of which is upregulated by cholesterol and repressed by KstR, was deleted in M. tuberculosis H37Rv. We demonstrated that fadA5 is required for utilization of cholesterol as a sole carbon source in vitro and for full virulence of M. tuberculosis in the chronic stage of mouse lung infection. Cholesterol is not toxic to the fadA5 mutant strain, and, therefore, toxicity does not account for its attenuation. We show that the wild-type strain, H37Rv, metabolizes cholesterol to androst-4-ene-3,17-dione (AD) and androsta-1,4-diene-3,17-dione (ADD) and exports these metabolites into the medium, whereas the fadA5 mutant strain is defective for this activity. We demonstrate that FadA5 catalyzes the thiolysis of acetoacetyl-coenzyme A (CoA). This catalytic activity is consistent with a β-ketoacyl-CoA thiolase function in cholesterol β-oxidation that is required for the production of androsterones. We conclude that the attenuated phenotype of the fadA5 mutant is a consequence of disrupted cholesterol metabolism that is essential only in the persistent stage of M. tuberculosis infection and may be caused by the inability to produce AD/ADD from cholesterol.
机译:结核分枝杆菌是结核的病原体,是一种细胞内病原体,会在宿主体内转移至脂质代谢。此外,宿主脂质胆固醇的代谢在结核分枝杆菌感染中起重要作用。我们使用转录谱分析来鉴定受胆固醇和KstR(Rv3574)(一种TetR样阻遏物)转录调控的基因。 fadA5(Rv3546)基因被注释为脂质代谢硫解酶,其表达被胆固醇上调并被KstR抑制,在结核分枝杆菌H37Rv中被删除。我们证明fadA5是在体外利用胆固醇作为唯一碳源以及在小鼠肺部感染的慢性阶段充分感染结核分枝杆菌所必需的。胆固醇对fadA5突变株无毒,因此,毒性不代表其衰减。我们显示野生型菌株H37Rv将胆固醇代谢为androst-4-ene-3,17-dione(AD)和androsta-1,4-diene-3,17-dione(ADD),并将这些代谢物输出到培养基,而fadA5突变株对此活性有缺陷。我们证明FadA5催化乙酰乙酰辅酶A(CoA)的硫解作用。该催化活性与产生雄甾酮所需的胆固醇β-氧化中的β-酮酰基-CoA硫解酶功能一致。我们得出结论,fadA5突变体的减毒表型是胆固醇代谢紊乱的结果,胆固醇代谢紊乱仅在结核分枝杆菌感染的持续阶段才是必需的,并且可能是由于无法从胆固醇中产生AD / ADD引起的。

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