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MmpL8 is required for sulfolipid-1 biosynthesis and Mycobacterium tuberculosis virulence

机译:MmpL8是硫脂1生物合成和结核分枝杆菌毒力所必需的

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Mycobacterium tuberculosis, the causative agent of human tuberculosis, is unique among bacterial pathogens in that it displays a wide array of complex lipids and lipoglycans on its cell surface. One of the more remarkable lipids is a suIfated glycolipid, termed sulfolipid-1 (SL-1), which is thought to mediate specific host-pathogen interactions during infection. However, a direct role for SL-1 in M. tuberculosis virulence has not been established. Here we show that MmpL8, a member of a large family of predicted lipid transporters in M. tuberculosis, is required for SL-1 production. The accumulation of an SL-1 precursor, termed SL_(1278). in mmpL8 mutant cells indicates that MmpL8 is necessary for an intermediate step in the SL-1 biosynthesis pathway. We use a novel fractionation procedure to demonstrate that SL-1 is present on the cell surface, whereas SL_(1278) is found exclusively in more internal layers. Importantly, we show that mmpL8 mutants are attenuated for growth in a mouse model of tuberculosis. However, SL-1 perse is not required for establishing infection as pks2 mutants, which are defective in an earlier step in SL-1 biosynthesis, have no obvious growth defect. Thus, we hypothesize that either MmpL8 transports molecules in addition to SL-1 that mediate host-pathogen interactions or the accumulation of SL_(1278) in mmpL8 mutant cells interferes with other pathways required for growth during the early stages of infection.
机译:结核分枝杆菌是人类结核病的病原体,在细菌病原体中是独特的,因为它在其细胞表面显示出各种各样的复杂脂质和脂多糖。一种更出色的脂质是称为糖脂1(SL-1)的糖脂,被认为在感染过程中介导了特定的宿主-病原体相互作用。但是,SL-1在结核分枝杆菌毒力中没有直接作用。在这里,我们显示MmpL8是结核分枝杆菌中大量预测脂质转运蛋白家族的成员,对于SL-1生产而言是必需的。 SL-1前体的积累,称为SL_(1278)。 mmpL8突变细胞中的MmpL8表达表明MmpL8是SL-1生物合成途径中的中间步骤所必需的。我们使用一种新颖的分馏程序来证明SL-1存在于细胞表面,而SL_(1278)仅存在于更多的内部层中。重要的是,我们显示mmpL8突变体在结核病小鼠模型中的生长被减弱。但是,SL-1本身不是建立感染所必需的,因为在SL-1生物合成的较早阶段存在缺陷的pks2突变体没有明显的生长缺陷。因此,我们假设MmpL8除了SL-1以外还可以转运介导宿主-病原体相互作用的分子,或者mmpL8突变细胞中SL_(1278)的积累会干扰感染早期阶段生长所需的其他途径。

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