Division of Mycobacterial Research, MRC National Institute for Medical Research, Mill Hill, London, United Kingdom.
J Bacteriol. 2012 May;194(9):2307-20. doi: 10.1128/JB.00142-12. Epub 2012 Mar 2.
The ESX-1 secretion system of Mycobacterium tuberculosis has to be precisely regulated since the secreted proteins, although required for a successful virulent infection, are highly antigenic and their continued secretion would alert the immune system to the infection. The transcription of a five-gene operon containing espACD-Rv3613c-Rv3612c, which is required for ESX-1 secretion and is essential for virulence, was shown to be positively regulated by the EspR transcription factor. Thus, transcription from the start site, found to be located 67 bp upstream of espA, was dependent upon EspR enhancer-like sequences far upstream (between 884 and 1,004 bp), which we term the espA activating region (EAR). The EAR contains one of the known binding sites for EspR, providing the first in vivo evidence that transcriptional activation at the espA promoter occurs by EspR binding to the EAR and looping out DNA between this site and the promoter. Regulation of transcription of this operon thus takes place over long regions of the chromosome. This regulation may differ in some members of the M. tuberculosis complex, including Mycobacterium bovis, since deletions of the intergenic region have removed the upstream sequence containing the EAR, resulting in lowered espA expression. Consequent differences in expression of ESX-1 in these bacteria may contribute to their various pathologies and host ranges. The virulence-critical nature of this operon means that transcription factors controlling its expression are possible drug targets.
结核分枝杆菌 ESX-1 分泌系统必须精确调控,因为分泌蛋白虽然是成功致病感染所必需的,但具有高度抗原性,如果持续分泌,会使免疫系统对感染产生警觉。EspR 转录因子正向调控一个包含 espACD-Rv3613c-Rv3612c 的五基因操纵子的转录,该操纵子是 ESX-1 分泌所必需的,也是毒力所必需的。发现 espA 上游 67bp 的起始位点的转录依赖于 EspR 增强子样序列的远距离上游(在 884 到 1004bp 之间),我们将其称为 espA 激活区(EAR)。EAR 包含 EspR 的已知结合位点之一,这为 EspR 通过结合 EAR 并在该位点和启动子之间环化 DNA 来实现 espA 启动子转录激活提供了第一个体内证据。因此,该操纵子的转录调控发生在染色体的长区域上。这种调控在结核分枝杆菌复合体的某些成员中可能不同,包括牛分枝杆菌,因为基因间区域的缺失消除了包含 EAR 的上游序列,导致 espA 表达降低。这些细菌中 ESX-1 的表达差异可能导致它们的不同病理和宿主范围。该操纵子的毒力关键性质意味着控制其表达的转录因子可能是潜在的药物靶点。