Jackson M, Raynaud C, Lanéelle M A, Guilhot C, Laurent-Winter C, Ensergueix D, Gicquel B, Daffé M
Unité de Génétique Mycobactérienne, Institut Pasteur, Paris, France.
Mol Microbiol. 1999 Mar;31(5):1573-87. doi: 10.1046/j.1365-2958.1999.01310.x.
The antigen 85 complex of Mycobacterium tuberculosis consists of three abundantly secreted proteins. The recent characterization of a mycoloyltransferase activity associated in vitro with each of these antigens suggested that they are potentially important for the building of the unusual cell envelope of mycobacteria. To define the physiological role of these proteins, the gene coding for antigen 85C was inactivated by transposon mutagenesis. The resulting mutant was shown to transfer 40% fewer mycolates to the cell wall with no change in the types of mycolates esterifying arabinogalactan or in the composition of non-covalently linked mycolates. As a consequence, the diffusion of the hydrophobic chenodeoxycholate and the hydrophilic glycerol, but not that of isoniazid, was found to be much faster through the cell envelope of the mutant than that of the parent strain. Taken together, these data demonstrate that: (i) antigen 85C is involved directly or indirectly in the transfer of mycolates onto the cell wall of the whole bacterium; (ii) the enzyme is not specific for a given type of mycolate; and (iii) the cell wall-linked mycolate layer may represent a barrier for the diffusion of small hydrophobic and hydrophilic molecules.
结核分枝杆菌的抗原85复合物由三种大量分泌的蛋白质组成。最近对这些抗原中的每一种在体外相关的一种分枝菌酰基转移酶活性的表征表明,它们对于构建分枝杆菌异常的细胞壁可能很重要。为了确定这些蛋白质的生理作用,通过转座子诱变使编码抗原85C的基因失活。结果显示,所得突变体转移到细胞壁上的分枝菌酸减少了40%,而酯化阿拉伯半乳聚糖的分枝菌酸类型或非共价连接的分枝菌酸组成没有变化。因此,发现疏水的鹅去氧胆酸盐和亲水的甘油通过突变体细胞包膜的扩散比亲本菌株快得多,但异烟肼的扩散并非如此。综上所述,这些数据表明:(i)抗原85C直接或间接参与分枝菌酸向整个细菌细胞壁的转移;(ii)该酶对特定类型的分枝菌酸不具有特异性;(iii)与细胞壁相连的分枝菌酸层可能是小疏水和亲水分子扩散的屏障。