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首页> 外文期刊>Scientific reports. >Discovery of a novel dehydratase of the fatty acid synthase type II critical for ketomycolic acid biosynthesis and virulence of Mycobacterium tuberculosis
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Discovery of a novel dehydratase of the fatty acid synthase type II critical for ketomycolic acid biosynthesis and virulence of Mycobacterium tuberculosis

机译:发现脂肪酸合成酶II的新型脱水酶,对三元酸生物合成和结核分枝杆菌的毒力至关重要

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The fatty acid synthase type II (FAS-II) multienzyme system builds the main chain of mycolic acids (MAs), important lipid pathogenicity factors of Mycobacterium tuberculosis (Mtb). Due to their original structure, the identification of the (3?R)-hydroxyacyl-ACP dehydratases, HadAB and HadBC, of Mtb FAS-II complex required in-depth work. Here, we report the discovery of a third dehydratase protein, HadDMtb (Rv0504c), whose gene is non-essential and sits upstream of cmaA2 encoding a cyclopropane synthase dedicated to keto- and methoxy-MAs. HadDMtb deletion triggered a marked change in Mtb keto-MA content and size distribution, deeply impacting the production of full-size molecules. Furthermore, abnormal MAs, likely generated from 3-hydroxylated intermediates, accumulated. These data strongly suggest that HadDMtb catalyzes the 3-hydroxyacyl dehydratation step of late FAS-II elongation cycles during keto-MA biosynthesis. Phenotyping of Mtb hadD deletion mutant revealed the influence of HadDMtb on the planktonic growth, colony morphology and biofilm structuration, as well as on low temperature tolerance. Importantly, HadDMtb has a strong impact on Mtb virulence in the mouse model of infection. The effects of the lack of HadDMtb observed both in vitro and in vivo designate this protein as a bona fide target for the development of novel anti-TB intervention strategies.
机译:脂肪酸合成酶II型(FAS-II)偏见酶系统构建霉菌酸(MAS)的主链,分枝杆菌结核病(MTB)的重要脂质致病因子。由于其原始结构,MTB FAS-II复合物的(3·r) - 羟基苯基-ACP脱水酶,HATAB和HADBC的鉴定需要进行深入的工作。在这里,我们报告了第三脱水酶蛋白HaddMTB(RV0504C)的发现,其基因是非必需的,并且坐在编码酮和甲氧基-Mas的环丙烷合成酶的CMAA2上游。 HaddMTB删除触发了MTB keto-MA含量和尺寸分布的显着变化,深刻影响了全尺寸分子的生产。此外,异常的MAS,可能产生3-羟基化的中间体,积累。这些数据强烈建议HaddMTB在酮酮生物合成期间催化晚期FAS-II伸长循环的3-羟基苯基脱水步骤。 MTB Hadd缺失突变体的表型显示HADDMTB对浮游生物生长,菌落形态和生物膜结构的影响,以及低温耐受性。重要的是,HaddMTB对感染小鼠模型中的MTB毒力产生了强烈影响。缺乏HADDMTB的影响在体外和体内观察到该蛋白质作为新型防结核病干预策略发展的真正目标。

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