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毒力质粒pR99和金属蛋白酶Vvp在创伤弧菌血清型E抵抗鳗鱼先天免疫中的作用

Role of the virulence plasmid pR99 and the metalloprotease Vvp in resistance of Vibrio vulnificus serovar E to eel innate immunity.

作者信息

Valiente E, Lee C T, Lamas J, Hor L, Amaro C

机构信息

Department of Microbiology and Ecology, University of Valencia, Dr. Moliner 50, 46100 Burjassot, Valencia, Spain.

出版信息

Fish Shellfish Immunol. 2008 Jan;24(1):134-41. doi: 10.1016/j.fsi.2007.10.007. Epub 2007 Oct 25.

Abstract

Vibrio vulnificus biotype 2 serovar E (VSE) is a bacterial pathogen that produces a haemorrhagic septicaemia called vibriosis in eels. Its ability to grow in blood is conferred by a recently described virulence plasmid [Lee CT, Amaro C, Wu KM, Valiente E, Chang YF, Tsai SF, et al. A common virulence plasmid in biotype 2 Vibrio vulnificus and its dissemination aided by a conjugal plasmid. Journal of Bacteriology, submitted for publication.]. In this study, we analyzed the role of this plasmid together with the role played by the metalloprotease (Vvp) in the interaction between bacteria and eel innate immunity. To this end, we compared and statistically analyzed the differences in resistance to serum and mucus factors (complement, selected antimicrobial peptides, transferrin and lysozyme) and also to phagocytosis/opsonophagocytosis between one VSE strain and its derivatives: a plasmid-cured strain and a vvp-deficient mutant. The wild-type and the metalloprotease-deficient strains were resistant to both the bactericidal action of fresh serum and the phagocytosis and opsonophagocytosis by eel phagocytes, confirming that Vvp is not involved in resistance to eel innate immunity. In contrast, the cured strain was sensitive to both the bactericidal action of eel serum activated by the alternative pathway and phagocytosis/opsonophagocytosis. Since no plasmid-encoded ORF, with homology to known genes, is related to the resistance to innate immunity [Lee CT, Amaro C, Wu KM, Valiente E, Chang YF, Tsai SF, et al. A common virulence plasmid in biotype 2 Vibrio vulnificus and its dissemination aided by a conjugal plasmid. Journal of Bacteriology, submitted for publication.], this function could be codified by one or more new genes. Further studies are underway to characterize the plasmid-encoded system responsible for V. vulnificus resistance to the innate immune system of eels.

摘要

创伤弧菌生物型2血清型E(VSE)是一种细菌病原体,可在鳗鱼中引发一种称为弧菌病的出血性败血症。它在血液中生长的能力是由最近描述的一种毒力质粒赋予的[Lee CT,Amaro C,Wu KM,Valiente E,Chang YF,Tsai SF等。生物型2创伤弧菌中的一种常见毒力质粒及其通过接合性质粒的传播。《细菌学杂志》,待发表]。在本研究中,我们分析了该质粒的作用以及金属蛋白酶(Vvp)在细菌与鳗鱼固有免疫相互作用中所起的作用。为此,我们比较并统计分析了一株VSE菌株及其衍生物(一个质粒消除菌株和一个vvp缺陷突变体)在抵抗血清和黏液因子(补体、选定的抗菌肽、转铁蛋白和溶菌酶)以及吞噬作用/调理吞噬作用方面的差异。野生型和金属蛋白酶缺陷型菌株对新鲜血清的杀菌作用以及鳗鱼吞噬细胞的吞噬作用和调理吞噬作用均具有抗性,这证实Vvp不参与对鳗鱼固有免疫的抗性。相比之下,消除质粒的菌株对由替代途径激活的鳗鱼血清的杀菌作用以及吞噬作用/调理吞噬作用均敏感。由于没有与已知基因具有同源性的质粒编码开放阅读框与对固有免疫的抗性相关[Lee CT,Amaro C,Wu KM,Valiente E,Chang YF,Tsai SF等。生物型2创伤弧菌中的一种常见毒力质粒及其通过接合性质粒的传播。《细菌学杂志》,待发表],该功能可能由一个或多个新基因编码。目前正在进行进一步研究,以表征负责创伤弧菌对鳗鱼固有免疫系统抗性的质粒编码系统。

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