Bacon Joanna, Dover Lynn G, Hatch Kim A, Zhang Yi, Gomes Jessica M, Kendall Sharon, Wernisch Lorenz, Stoker Neil G, Butcher Philip D, Besra Gurdyal S, Marsh Philip D
TB Research group, Health Protection Agency, Centre for Emergency Preparedness and Response, Porton Down, Salisbury, Wiltshire SP4 0JG, UK.
School of Biosciences, University of Birmingham, Edgbaston, Birmingham B15 2TT, UK.
Microbiology (Reading). 2007 May;153(Pt 5):1435-1444. doi: 10.1099/mic.0.2006/004317-0.
The low level of available iron in vivo is a major obstacle for microbial pathogens and is a stimulus for the expression of virulence genes. In this study, Mycobacterium tuberculosis H37Rv was grown aerobically in the presence of limited iron availability in chemostat culture to determine the physiological response of the organism to iron-limitation. A previously unidentified wax ester accumulated under iron-limited growth, and changes in the abundance of triacylglycerol and menaquinone were also observed between iron-replete and iron-limited chemostat cultures. DNA microarray analysis revealed differential expression of genes involved in glycerolipid metabolism and isoprenoid quinone biosynthesis, providing some insight into the underlying genetic changes that correlate with cell-wall lipid profiles of M. tuberculosis growing in an iron-limited environment.
体内可利用铁水平较低是微生物病原体面临的主要障碍,也是毒力基因表达的刺激因素。在本研究中,结核分枝杆菌H37Rv在恒化器培养中于铁供应有限的条件下好氧生长,以确定该生物体对铁限制的生理反应。在铁限制生长条件下积累了一种先前未鉴定的蜡酯,并且在铁充足和铁限制的恒化器培养之间还观察到三酰甘油和甲萘醌丰度的变化。DNA微阵列分析揭示了参与甘油脂代谢和类异戊二烯醌生物合成的基因的差异表达,这为与在铁限制环境中生长的结核分枝杆菌细胞壁脂质谱相关的潜在遗传变化提供了一些见解。