Hahn Mi-Young, Raman Sahadevan, Anaya Mauricio, Husson Robert N
Division of Infectious Diseases, Children's Hospital, 300 Longwood Ave., Boston, MA 02115, USA.
J Bacteriol. 2005 Oct;187(20):7062-71. doi: 10.1128/JB.187.20.7062-7071.2005.
Mycobacterium tuberculosis sigL encodes an extracytoplasmic function (ECF) sigma factor and is adjacent to a gene for a membrane protein (Rv0736) that contains a conserved HXXXCXXC sequence. This motif is found in anti-sigma factors that regulate several ECF sigma factors, including those that control oxidative stress responses. In this work, SigL and Rv0736 were found to be cotranscribed, and the intracellular domain of Rv0736 was shown to interact specifically with SigL, suggesting that Rv0736 may encode an anti-sigma factor of SigL. An M. tuberculosis sigL mutant was not more susceptible than the parental strain to several oxidative and nitrosative stresses, and sigL expression was not increased in response to these stresses. In vivo, sigL is expressed from a weak SigL-independent promoter and also from a second SigL-dependent promoter. To identify SigL-regulated genes, sigL was overexpressed and microarray analysis of global transcription was performed. Four small operons, sigL (Rv0735)-Rv0736, mpt53 (Rv2878c)-Rv2877c, pks10 (Rv1660)-pks7 (Rv1661), and Rv1139c-Rv1138c, were among the most highly upregulated genes in the sigL-overexpressing strain. SigL-dependent transcription start sites of these operons were mapped, and the consensus promoter sequences TGAACC in the -35 region and CGTgtc in the -10 region were identified. In vitro, purified SigL specifically initiated transcription from the promoters of sigL, mpt53, and pks10. Additional genes, including four PE_PGRS genes, appear to be regulated indirectly by SigL. In an in vivo murine infection model, the sigL mutant strain showed marked attenuation, indicating that the sigL regulon is important in M. tuberculosis pathogenesis.
结核分枝杆菌sigL编码一种胞外功能(ECF)σ因子,且与一个膜蛋白基因(Rv0736)相邻,该膜蛋白含有保守的HXXXCXXC序列。这个基序存在于调节多个ECF σ因子的抗σ因子中,包括那些控制氧化应激反应的抗σ因子。在这项研究中,发现SigL和Rv0736是共转录的,并且Rv0736的胞内结构域被证明与SigL特异性相互作用,这表明Rv0736可能编码SigL的一种抗σ因子。结核分枝杆菌sigL突变体对几种氧化和亚硝化应激并不比亲本菌株更敏感,并且sigL的表达在这些应激反应中也没有增加。在体内,sigL由一个弱的不依赖SigL的启动子表达,也由第二个依赖SigL的启动子表达。为了鉴定受SigL调控的基因,使sigL过表达并进行了全局转录的微阵列分析。四个小操纵子,sigL(Rv0735)-Rv0736、mpt53(Rv2878c)-Rv2877c、pks10(Rv1660)-pks7(Rv1661)和Rv1139c-Rv1138c,是sigL过表达菌株中上调最显著的基因之一。绘制了这些操纵子的依赖SigL的转录起始位点,并鉴定出-35区域的共有启动子序列TGAACC和-10区域的CGTgtc。在体外,纯化的SigL特异性地从sigL、mpt53和pks10的启动子起始转录。其他基因,包括四个PE_PGRS基因,似乎间接受SigL调控。在体内小鼠感染模型中,sigL突变体菌株显示出明显的减毒,表明sigL调控子在结核分枝杆菌致病过程中很重要。