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Virulence attenuation of two Mas-like polyketide synthase mutants of Mycobacterium tuberculosis

机译:二元菌两种MAS样聚酮合成酶突变体的毒力衰减

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The cell envelope of pathogenic mycobacteria is highly distinctive in that it contains a large number of structurally related very long multiple methyl-branched fatty acids. These complex molecules are thought to play important roles in cell envelope organization and virulence. The genetic and enzymic characterization of the polyketide synthase Mas, which is responsible for the synthesis of one such family of fatty acids (the mycocerosic acids), paved the way towards the identification of other enzymes involved in the synthesis of methyl-branched fatty acids in M. tuberculosis. In an effort to elucidate the origin of these complex fatty acids and their possible involvement in pathogenesis, the two mas-like polyketide genes pks5 and pks7 were disrupted in M. tuberculosis and the effects of their inactivation on fatty acid composition and virulence were analysed. While the disruption of pks7 resulted in a mutant deficient in the production of phthiocerol dimycocerosates, the cell envelope composition of the pks5 mutant was found to be identical to that of the wild-type parental strain M. tuberculosis H37Rv. Interestingly, both the pks5 and pks7 mutants displayed severe growth defects in mice.
机译:致病性分枝杆菌的细胞包络是高度显着的,因为它含有大量结构相关的非常长的多个甲基支链脂肪酸。这些复杂的分子被认为在细胞包络组织和毒力中发挥重要作用。聚酮化合酶Mas的遗传和酶表征,其负责合成一种这种脂肪酸(菌核酸),朝着鉴定甲基 - 支链脂肪酸合成中参与的其他酶的鉴定结核病。努力阐明这些复合脂肪酸的起源及其可能受累的发病机制,两种MAS样聚酮基因基因PKS5和PKS7被破坏在M.结核中,分析了它们失活对脂肪酸组成和毒力的影响。虽然PKS7的破坏导致缺乏磷酸酞烯烃的产生缺乏,但发现PKS5突变体的细胞包络组合物与野生型亲本菌株M.结核病H37RV的细胞包络组合物相同。有趣的是,PKS5和PKS7突变体都显示出小鼠的严重生长缺陷。

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