Department of Pharmacy, College of Pharmacy, Pusan National University, Busan 609-735, South Korea.
Department of Pharmacy, College of Pharmacy, Pusan National University, Busan 609-735, South Korea.
Microb Pathog. 2014 Jun-Jul;71-72:8-14. doi: 10.1016/j.micpath.2014.04.001. Epub 2014 Apr 21.
Vibrio vulnificus, a Gram-negative bacterium, is an opportunistic human pathogen responsible for fatal septicemia caused by contaminated sea foods in eastern Asia. Quorum sensing (QS) is a cell-density dependent gene regulation mechanism that controls the expression of many virulence genes in various bacteria and V. vulnificus has been also suggested to express their virulence genes through the QS system. In this study, we investigated the role of QS system and QS-regulated exoproteases in the virulence of V. vulnificus using several invertebrate host models, Tenebrio molitor, an insect, Caenorhabditis elegans, a nematode, and brine shrimp (Artemia), an aquatic crustacean. When the culture supernatant of smcR (major QS regulator of V. vulnificus) mutant was injected to T. molitor larvae, it failed to induce the melanization of T. molitor larvae, while the culture supernatant of luxO (upstream negative regulator of smcR) mutant more strongly induced the melanization than wild type. These results demonstrated that QS system of V. vulnificus is crucial for virulence to T. molitor larvae. Among several QS-dependently expressed exoproteases of V. vulnificus, vvpE encoding a metalloprotease was mainly responsible for the melanization of T. molitor larvae, in that the culture supernatant of vvpE mutant failed to induce the melanization. This result was confirmed using the C. elegans and Artemia salina model systems, in which the vvpE mutant strains were attenuated in killing C. elegans and A. salina, compared with wild type, indicating that VvpE is important in the infection of V. vulnificus. In conclusion, we suggest that QS system and a QS-dependent exoprotease, VvpE are crucial for the V. vulnificus virulence to invertebrates.
创伤弧菌是一种革兰氏阴性细菌,是东亚地区食源性海产品感染导致致命败血症的机会致病菌。群体感应(QS)是一种细胞密度依赖性基因调控机制,控制着各种细菌中许多毒力基因的表达,创伤弧菌也被认为通过 QS 系统表达其毒力基因。在这项研究中,我们使用几种无脊椎动物宿主模型,即昆虫黄粉虫、线虫秀丽隐杆线虫和水生甲壳类动物卤虫,研究了 QS 系统和 QS 调节的外蛋白酶在创伤弧菌毒力中的作用。当 smcR(创伤弧菌主要 QS 调节因子)突变体的培养上清液注射到黄粉虫幼虫中时,它未能诱导黄粉虫幼虫黑化,而 luxO(smcR 的上游负调节因子)突变体的培养上清液比野生型更强烈地诱导黑化。这些结果表明,创伤弧菌的 QS 系统对黄粉虫幼虫的毒力至关重要。在创伤弧菌的几种 QS 依赖性表达外蛋白酶中,编码金属蛋白酶的 vvpE 主要负责黄粉虫幼虫的黑化,因为 vvpE 突变体的培养上清液未能诱导黑化。这一结果在使用秀丽隐杆线虫和卤虫模型系统时得到了证实,在这些模型系统中,vvpE 突变株在杀死秀丽隐杆线虫和卤虫时的毒力较野生型减弱,表明 VvpE 对创伤弧菌的感染很重要。总之,我们认为 QS 系统和 QS 依赖性外蛋白酶 VvpE 对创伤弧菌感染无脊椎动物至关重要。