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Arylamine N-Acetyltransferase Is Required for Synthesis of Mycolic Acids and Complex Lipids in Mycobacterium bovis BCG and Represents a Novel Drug Target

机译:牛分枝杆菌BCG中分支酸和复杂脂质的合成需要芳胺N-乙酰基转移酶,并且代表一种新型药物靶标

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摘要

Mycolic acids represent a major component of the unique cell wall of mycobacteria. Mycolic acid biosynthesis is inhibited by isoniazid, a key frontline antitubercular drug that is inactivated by mycobacterial and human arylamine N-acetyltransferase (NAT). We show that an in-frame deletion of Mycobacterium bovis BCG nat results in delayed entry into log phase, altered morphology, altered cell wall lipid composition, and increased intracellular killing by macrophages. In particular, deletion of nat perturbs biosynthesis of mycolic acids and their derivatives and increases susceptibility of M. bovis BCG to antibiotics that permeate the cell wall. Phenotypic traits are fully complemented by introduction of Mycobacterium tuberculosis nat. We infer from our findings that NAT is critical to normal mycolic acid synthesis and hence other derivative cell wall components and represents a novel target for antituberculosis therapy. In addition, this is the first report of an endogenous role for NAT in mycobacteria.
机译:分枝杆菌酸代表分枝杆菌独特细胞壁的主要成分。异烟肼抑制了霉菌酸的生物合成,异烟肼是一种关键的一线抗结核药物,已被分枝杆菌和人的芳基胺N-乙酰基转移酶(NAT)灭活。我们显示,牛分枝杆菌卡介苗的框架内删除导致延迟进入对数期,改变形态,改变细胞壁脂质组成,并增加细胞内被巨噬细胞杀死。特别地,缺失nat扰乱了霉菌酸及其衍生物的生物合成,并增加了牛分枝杆菌BCG对渗透到细胞壁的抗生素的敏感性。表型性状通过引入结核分枝杆菌nat得以充分补充。根据我们的发现,NAT对正常的霉菌酸合成至关重要,因此对于其他派生的细胞壁成分也至关重要,并且代表了抗结核治疗的新目标。此外,这是NAT在分枝杆菌中内源性作用的首次报道。

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