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苏云金芽孢杆菌中受PlcR调控的基因inhA2对毒力来说是必要的,但并不充分。

The Bacillus thuringiensis PlcR-regulated gene inhA2 is necessary, but not sufficient, for virulence.

作者信息

Fedhila Sinda, Gohar Michel, Slamti Leyla, Nel Patricia, Lereclus Didier

机构信息

Unité Génétique Microbienne et Environnement, Institut National de la Recherche Agronomique, La Minière, 78285 Guyancourt Cedex, France.

出版信息

J Bacteriol. 2003 May;185(9):2820-5. doi: 10.1128/JB.185.9.2820-2825.2003.

Abstract

We previously reported that Bacillus thuringiensis strain 407 Cry 32(-) secretes a zinc-requiring metalloprotease, InhA2, that is essential for virulence in orally infected insects. Analysis of the inhA2-lacZ transcriptional fusion showed that inhA2 expression is repressed in a PlcR(-) background. Using DNase I footprinting experiments, we demonstrated that PlcR activates inhA2 transcription directly by binding to a DNA sequence showing a one-residue mismatch with the previously reported PlcR box. It was previously reported that PlcR is essential for B. thuringiensis virulence in oral infection by contributing to the synergistic properties of the spores on the insecticidal activity of the Cry1C protein. We used complementation experiments to investigate whether the PlcR(-) phenotype was due to the absence of InhA2. The results indicated that overexpression of inhA2 in the (Delta)plcR strain did not restore the wild-type phenotype. However, virulence was fully restored in the (Delta)inhA2 complemented mutant. Thus, inhA2 is the first example of a PlcR-regulated gene found to be directly involved in virulence. However, it is not sufficient for pathogenicity when the other members of the PlcR regulon are lacking. This suggests that InhA2 may act in concert with other PlcR-regulated gene products to provide virulence.

摘要

我们之前报道过,苏云金芽孢杆菌407菌株Cry 32(-)分泌一种需要锌的金属蛋白酶InhA2,它对于经口感染昆虫的毒力至关重要。对inhA2-lacZ转录融合体的分析表明,inhA2的表达在PlcR(-)背景下受到抑制。通过DNA酶I足迹实验,我们证明PlcR通过与一个与先前报道的PlcR框有一个残基错配的DNA序列结合,直接激活inhA2转录。之前有报道称,PlcR通过促进孢子对Cry1C蛋白杀虫活性的协同作用,对于苏云金芽孢杆菌经口感染的毒力至关重要。我们利用互补实验来研究PlcR(-)表型是否是由于InhA2的缺失所致。结果表明,在(Delta)plcR菌株中inhA2的过表达并未恢复野生型表型。然而,在(Delta)inhA2互补突变体中,毒力完全恢复。因此,inhA2是首个被发现直接参与毒力的PlcR调控基因的例子。然而,当PlcR调控子的其他成员缺失时,它对于致病性是不够的。这表明InhA2可能与其他PlcR调控的基因产物协同作用以提供毒力。

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