Grandvalet Cosette, Gominet Myriam, Lereclus Didier
Unité de Biochimie Microbienne, Centre National de la Recherche Scientifique URA 2172, Institut Pasteur, 25 rue du Docteur Roux, 75724 Paris Cedex 15, France1.
Station de Recherche de Lutte Biologique, Institut National de la Recherche Agronomique, La Minière, 78285 Guyancourt, France2.
Microbiology (Reading). 2001 Jul;147(Pt 7):1805-1813. doi: 10.1099/00221287-147-7-1805.
The immune inhibitor A (InhA) metalloprotease from Bacillus thuringiensis specifically cleaves antibacterial proteins produced by the insect host, suggesting that it may contribute to the overall virulence of B. thuringiensis. The transcriptional regulation of the inhA gene in both B. thuringiensis and Bacillus subtilis was investigated. Using a transcriptional inhA'-lacZ fusion, it was shown that inhA expression is activated at the onset of sporulation. However, the transcriptional start site of inhA is similar to sigma(A)-dependent promoters, and deletion of the sporulation-specific sigma factors sigma(F) or sigma(E) had no effect on inhA expression in B. subtilis. The DNA region upstream from inhA contains two genes encoding polypeptides similar to the SinI and SinR regulators of B. subtilis. SinR is a DNA-binding protein regulating gene expression and SinI inhibits SinR activity. Overexpression of the sin genes affects the expression of the inhA'-lacZ transcriptional fusion in B. thuringiensis: early induction of inhA expression was observed when sinI was overexpressed, whereas inhA expression was reduced in a strain overexpressing sinR, suggesting that inhA transcription is repressed, directly or indirectly, by SinR. inhA transcription was greatly reduced in B. thuringiensis and B. subtilis spo0A mutants. Analysis of the inhA'-lacZ expression in abrB and abrB-spo0A mutants of B. subtilis indicates that the Spo0A-dependent regulation of inhA expression depends on AbrB, which is known to regulate expression of transition state and sporulation genes in B. subtilis.
来自苏云金芽孢杆菌的免疫抑制剂A(InhA)金属蛋白酶可特异性切割昆虫宿主产生的抗菌蛋白,这表明它可能对苏云金芽孢杆菌的整体毒力有贡献。对苏云金芽孢杆菌和枯草芽孢杆菌中inhA基因的转录调控进行了研究。使用转录inhA'-lacZ融合体,结果表明inhA表达在芽孢形成开始时被激活。然而,inhA的转录起始位点类似于依赖sigma(A)的启动子,并且芽孢形成特异性sigma因子sigma(F)或sigma(E)的缺失对枯草芽孢杆菌中inhA的表达没有影响。inhA上游的DNA区域包含两个编码与枯草芽孢杆菌的SinI和SinR调节因子相似的多肽的基因。SinR是一种调节基因表达的DNA结合蛋白,而SinI抑制SinR的活性。sin基因的过表达影响苏云金芽孢杆菌中inhA'-lacZ转录融合体的表达:当sinI过表达时观察到inhA表达的早期诱导,而在过表达sinR的菌株中inhA表达降低,这表明inhA转录直接或间接受SinR抑制。在苏云金芽孢杆菌和枯草芽孢杆菌spo0A突变体中,inhA转录大大降低。对枯草芽孢杆菌的abrB和abrB-spo0A突变体中inhA'-lacZ表达的分析表明,inhA表达的Spo0A依赖性调控取决于AbrB,已知AbrB可调节枯草芽孢杆菌中过渡态和芽孢形成基因的表达。