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The InhA Metalloproteases of Bacillus cereus Contribute Concomitantly to Virulence▿

机译:蜡状芽孢杆菌的InhA金属蛋白酶与毒力同时发生

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摘要

The virulence of Bacillus cereus requires that bacteria have the capacity to colonize their host, degrade specific tissues, and circumvent the host immune system. To study this aspect of pathogenesis, we focused on three metalloproteases, InhA1, InhA2, and InhA3, which share more than 66% identity. The expression of these metalloprotease genes was assessed by transcriptional fusions with a lacZ reporter gene. The expression profiles suggest a complementary time course of InhA production. Indeed, the genes are simultaneously expressed but are oppositely controlled during stationary phase. We constructed single and multiple inhA mutants and assessed the bacterial locations of the proteins as well as their individual or additive roles in macrophage escape and toxicity, antibacterial-peptide cleavage, and virulence. InhA1, a major component of the spore exosporium, is the only InhA metalloprotease involved in bacterial escape from macrophages. A mutant lacking inhA1, inhA2, and inhA3 shows a strong decrease in the level of virulence for insects. Taken together, these results show that the InhA metalloproteases of B. cereus are important virulence factors that may allow the bacteria to counteract the host immune system.
机译:蜡状芽孢杆菌的毒力要求细菌具有定殖其宿主,降解特定组织并规避宿主免疫系统的能力。为了研究发病机理的这一方面,我们集中研究了三种金属蛋白酶InhA1,InhA2和InhA3,它们具有超过66%的同一性。这些金属蛋白酶基因的表达通过与lacZ报告基因的转录融合进行评估。表达谱表明InhA产生的互补时间过程。实际上,基因是同时表达的,但在稳定期却受到相反的控制。我们构建了单个和多个inhA突变体,并评估了蛋白质的细菌位置,以及它们在巨噬细胞逃逸和毒性,抗菌肽裂解和毒力中的个别或加成作用。 InhA1是孢子孢子囊的主要成分,是唯一参与细菌从巨噬细胞逸出的InhA金属蛋白酶。缺少inhA1,inhA2和inhA3的突变体显示昆虫的毒性水平大大降低。综上所述,这些结果表明蜡状芽孢杆菌的InhA金属蛋白酶是重要的毒力因子,可能使细菌抵消宿主的免疫系统。

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