Center for Microbial Interface Biology, The Ohio State University, 460 W. 12th Avenue, 1004 Biomedical Research Tower, Columbus, OH 43210, USA.
Infect Immun. 2011 Nov;79(11):4668-73. doi: 10.1128/IAI.05635-11. Epub 2011 Sep 6.
Mycobacterium tuberculosis contains mannosylated cell wall components which are important in macrophage recognition and response. The building block for the mannosyl constituents of these components is GDP-mannose, which is synthesized through a series of enzymes involved in the mannose donor biosynthesis pathway. Nothing is known about the expression levels of the genes encoding these enzymes during the course of infection. To generate transcriptional profiles for the mannose donor biosynthesis genes from virulent M. tuberculosis and attenuated Mycobacterium bovis BCG, bacteria were grown in broth culture and within human macrophages. Our results with broth-grown bacteria show that there are differences in expression of the selected genes between M. tuberculosis and BCG, with increased expression of manC in M. tuberculosis and manA in BCG during stationary-phase growth. Results for M. tuberculosis extracted from within macrophages show that whiB2 is highly expressed and manB and manC are moderately expressed during infection. Rv3256c, Rv3258c, and ppm1 have high expression levels early and decreased expression as the infection progresses. Results with BCG show that, as in M. tuberculosis, whiB2 is highly expressed throughout infection, whereas there is either low expression or little change in expression of the remaining genes studied. Overall, our results show that there is differential regulation of expression of several genes in the mannose donor biosynthesis pathway of M. tuberculosis and BCG grown in broth and within macrophages, raising the possibility that the level of mannose donors may vary during the course of infection and thereby impact the biosynthesis of mannose-containing cell wall molecules.
结核分枝杆菌含有甘露糖基化的细胞壁成分,这些成分在巨噬细胞识别和反应中很重要。这些成分的甘露糖基组成部分的构建块是 GDP-甘露糖,它通过参与甘露糖供体生物合成途径的一系列酶合成。在感染过程中,关于编码这些酶的基因的表达水平还一无所知。为了生成毒力结核分枝杆菌和减毒牛分枝杆菌 BCG 中甘露糖供体生物合成基因的转录谱,将细菌在肉汤培养物中和人巨噬细胞中生长。我们用肉汤培养物中生长的细菌得到的结果表明,M. tuberculosis 和 BCG 中选定基因的表达存在差异,在静止期生长时,M. tuberculosis 中 manC 的表达增加,BCG 中 manA 的表达增加。从巨噬细胞中提取的 M. tuberculosis 的结果表明,感染过程中 whiB2 高度表达,manB 和 manC 中度表达。Rv3256c、Rv3258c 和 ppm1 在早期具有高表达水平,随着感染的进展表达水平降低。BCG 的结果表明,与 M. tuberculosis 一样,whiB2 在整个感染过程中高度表达,而其余研究基因的表达水平要么很低,要么变化不大。总的来说,我们的结果表明,在 M. tuberculosis 和 BCG 的甘露糖供体生物合成途径中,有几个基因的表达受到差异调控,在感染过程中,甘露糖供体的水平可能会发生变化,从而影响含甘露糖的细胞壁分子的生物合成。