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Flavonoid inhibitors as novel antimycobacterial agents targeting Rv0636, a putative dehydratase enzyme involved in Mycobacterium tuberculosis fatty acid synthase II

机译:类黄酮抑制剂作为靶向RV0636的新型抗细菌剂,一种涉及结核分枝杆菌脂肪酸合成酶II的推定脱水酶

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Flavonoids comprise a large group of bioactive polyphenolic plant secondary metabolites. Several of these possess potent in vivo activity against Escherichia coli and Plasmodium falciparum, targeting enzymes involved in fatty acid biosynthesis, such as enoyl-ACP-reductase, β-ketoacyl-ACP reductase and β-hydroxyacyl-ACP dehydratase. Herein, we report that butein, isoliquirtigenin, 2,2′,4′-trihydroxychalcone and fisetin inhibit the growth of Mycobacterium bovis BCG. Furthermore, in vitro inhibition of the mycolic-acid-producing fatty acid synthase II (FAS-II) of Mycobacterium smegmatis suggests a mode of action related to those observed in E. coli and P. falciparum. Through a bioinformatic approach, we have established the product of Rv0636 as a candidate for the unknown mycobacterial dehydratase, and its overexpression in M. bovis BCG conferred resistance to growth inhibition by butein and isoliquirtigenin, and relieved inhibition of fatty acid and mycolic acid biosynthesis in vivo. Furthermore, after overexpression of Rv0636 in M. smegmatis, FAS-II was less sensitive to these inhibitors in vitro. Overall, the data suggest that these flavonoids are inhibitors of mycobacterial FAS-II and in particular Rv0636, which represents a strong candidate for the β-hydroxyacyl-ACP dehydratase enzyme of M. tuberculosis FAS-II.
机译:黄酮类化合物包含一大群生物活性多酚植物次生代谢物。其中几种具有效力对对大肠杆菌和疟原虫的体内活动,靶向酶活性,靶向脂肪酸生物合成,例如Enoyl-ACP还原酶,β-酮酰基-ACP还原酶和β-羟基乙酰-ACP脱水酶。在此,我们报告说,胰蛋白溶质,溶质三角蛋白,2,2',4'-三羟基羟妥戈酮和Fisetin抑制了BOVIS BCG的生长。此外,体外抑制分枝杆菌的分枝杆菌的霉菌酸脂肪酸合酶II(FAS-II)表明了与在大肠杆菌和P. falciparum中观察到的那些有关的作用方式。通过生物信息方法,我们已经建立了RV0636作为未知分枝杆菌脱水酶的候选物的产物,其在M.BOVIS BCG中的过度表达赋予胰岛溶质和溶素二维蛋白的生长抑制性,并缓解了对脂肪酸和氰酸生物合成的抑制体内。此外,在M. Smogmatis的RV0636过度表达后,FAS-II在体外对这些抑制剂敏感。总体而言,数据表明,这些黄酮类化合物是分枝杆菌FAS-II的抑制剂,特别是RV0636,其代表了M.结核病FAS-II的β-羟基酰基-ACP脱水酶的强烈候选。

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