首页> 外文期刊>Molecular Microbiology >Disruption of msl3 abolishes the synthesis of mycolipanoic and mycolipenic acids required for polyacyltrehalose synthesis in Mycobacterium tuberculosis H37Rv and causes cell aggregation.
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Disruption of msl3 abolishes the synthesis of mycolipanoic and mycolipenic acids required for polyacyltrehalose synthesis in Mycobacterium tuberculosis H37Rv and causes cell aggregation.

机译:msl3的破坏消除了结核分枝杆菌H37Rv中聚酰海藻糖合成所需的分支脂酸和分支霉酸的合成,并引起细胞聚集。

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Cell wall lipids of Mycobacterium tuberculosis containing multiple methylbranched fatty acids play critical roles in pathogenesis and thus offer targets for new antimycobacterial drugs. Mycocerosicacid synthase gene (mas) encodes the enzyme that produces one class of such acids. Seven mas-like genes (msls) were identified in the genome. One of them, msl3, originally annotated as two separate genes, pks 3 and pks 4, is now shown to constitute a single open reading frame, which encodes a 220.3 kDa protein. Msl3 was disrupted using a phage mediated delivery system and the gene replacement in the mutant was confirmed by polymerase chain reaction analysis of the flanking regions of the introduced disrupted gene and by Southern analysis. Biochemical analysis showed that the msl3 mutant does not produce mycolipanoic acids and mycolipenic(phthienoic) acids, the major constituents of polyacyl trehaloses and thus lacks this cell wall lipid, but synthesizes all of the other classes of lipids. The absence of the major acyl chains that anchor the surface-exposed acyltrehaloses causes a novel growth morphology; the cells stick to each other, most probably via the intercellular interaction between the exposed hydrophobic cell surfaces, manifesting a bead-like growth morphology without affecting the overall growth rate.
机译:包含多种甲基支链脂肪酸的结核分枝杆菌的细胞壁脂质在发病机理中起关键作用,因此为新的抗分枝杆菌药物提供了靶标。霉菌酸合酶基因(mas)编码产生一类此类酸的酶。在基因组中鉴定出七个mas-like基因(msls)。其中之一,msl3,最初被注释为两个独立的基因pks 3和pks 4,现在显示它们构成了一个单一的开放阅读框,编码220.3 kDa的蛋白质。使用噬菌体介导的递送系统破坏Msl3,并且通过对引入的破坏基因的侧翼区域进行聚合酶链反应分析和通过Southern分析来确认突变体中的基因置换。生化分析表明,msl3突变体不会产生脂多糖和海藻糖(邻苯二酚)酸(聚酰基海藻糖的主要成分),因此没有这种细胞壁脂质,但可以合成所有其他类别的脂质。锚定暴露于表面的酰基海藻糖的主要酰基链的缺失会导致一种新的生长形态。细胞相互粘附,很可能是通过暴露的疏水性细胞表面之间的细胞间相互作用,表现出珠状的生长形态,而不影响总体生长速率。

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