Shanghai Veterinary Research Institutegrid.464410.3, Chinese Academy of Agricultural Sciences (CAAS), Shanghai, China.
Jiangsu Agri-animal Husbandry Vocational College, Taizhou, Jiangsu, China.
J Bacteriol. 2022 Jul 19;204(7):e0007322. doi: 10.1128/jb.00073-22. Epub 2022 Jun 7.
Riemerella anatipestifer is a major pathogenic agent of duck septicemic and exudative diseases. Recent studies have shown that the R. anatipestifer type IX secretion system (T9SS) acts as a crucial virulence factor. We previously identified two T9SS component proteins, GldK and GldM, and one T9SS effector metallophosphoesterase, which play important roles in bacterial virulence. In this study, 19 T9SS-secreted proteins that contained a conserved T9SS C-terminal domain (CTD) were predicted in R. anatipestifer strain Yb2 by searching for CTD-encoding sequences in the whole genome. The proteins were confirmed with a liquid chromatography-tandem mass spectrometry analysis of the bacterial culture supernatant. Nine of them were reported in our previous study. We generated recombinant proteins and mouse antisera for the 19 predicted proteins to confirm their expression in the bacterial culture supernatant and in bacterial cells. Western blotting indicated that the levels of 14 proteins were significantly reduced in the T9SS mutant Yb2Δ culture medium but were increased in the bacterial cells. RT-qPCR indicated that the expression of these genes did not differ between the wild-type strain Yb2 and the T9SS mutant Yb2Δ. Nineteen mutant strains were successfully constructed to determine their virulence and proteolytic activity, which indicated that seven proteins are associated with bacterial virulence, and two proteins, AS87_RS04190 and AS87_RS07295, are protease-activity-associated virulence factors. In summary, we have identified at least 19 genes encoding T9SS-secreted proteins in the R. anatipestifer strain Yb2 genome, which encode multiple functions associated with the bacterium's virulence and proteolytic activity. Riemerella anatipestifer T9SS plays an important role in bacterial virulence. We have previously reported nine R. anatipestifer T9SS-secreted proteins and clarified the function of the metallophosphoesterase. In this study, we identified 10 more secreted proteins associated with the R. anatipestifer T9SS, in addition to the nine previously reported. Of these, 14 proteins showed significantly reduced secretion into the bacterial culture medium but increased expression in the bacterial cells of the T9SS mutant Yb2Δ; seven proteins were shown to be associated with bacterial virulence; and two proteins, AS87_RS04190 and AS87_RS07295, were shown to be protease-activity-associated virulence factors. Thus, we have demonstrated that multiple R. anatipestifer T9SS-secreted proteins function in virulence and proteolytic activity.
鸭传染性浆膜炎是一种主要的致病性疾病,可导致鸭败血症和渗出性疾病。最近的研究表明,鸭雷默氏菌的九型分泌系统(T9SS)是一种重要的毒力因子。我们之前鉴定了两种 T9SS 组成蛋白 GldK 和 GldM,以及一种 T9SS 效应物金属磷酸酯酶,它们在细菌毒力中发挥重要作用。在这项研究中,通过在全基因组中搜索 CTD 编码序列,在鸭雷默氏菌菌株 Yb2 中预测了 19 种含有保守 T9SS C 端结构域(CTD)的 T9SS 分泌蛋白。通过对细菌培养上清液的液相色谱-串联质谱分析,对这些蛋白进行了验证。其中 9 种在我们之前的研究中已经报道过。我们生成了重组蛋白和小鼠抗血清,用于 19 种预测蛋白,以确认它们在细菌培养上清液和细菌细胞中的表达。Western blot 表明,T9SS 突变株 Yb2Δ 培养物中的 14 种蛋白水平显著降低,但在细菌细胞中增加。RT-qPCR 表明,这些基因在野生型菌株 Yb2 和 T9SS 突变株 Yb2Δ 之间的表达没有差异。成功构建了 19 种突变株,以确定它们的毒力和蛋白水解活性,这表明 7 种蛋白与细菌毒力有关,两种蛋白 AS87_RS04190 和 AS87_RS07295 是与蛋白酶活性相关的毒力因子。总之,我们已经在鸭雷默氏菌 Yb2 基因组中鉴定了至少 19 种编码 T9SS 分泌蛋白的基因,这些基因编码与细菌毒力和蛋白水解活性相关的多种功能。雷默氏菌 T9SS 在细菌毒力中起着重要作用。我们之前报道了 9 种鸭雷默氏菌 T9SS 分泌蛋白,并阐明了金属磷酸酯酶的功能。在这项研究中,我们除了之前报道的 9 种之外,还鉴定了另外 10 种与鸭雷默氏菌 T9SS 相关的分泌蛋白。其中,14 种蛋白在 T9SS 突变株 Yb2Δ 的细菌培养物中的分泌显著减少,但在细菌细胞中的表达增加;7 种蛋白与细菌毒力有关;两种蛋白 AS87_RS04190 和 AS87_RS07295 是与蛋白酶活性相关的毒力因子。因此,我们已经证明,多种鸭雷默氏菌 T9SS 分泌蛋白在毒力和蛋白水解活性中发挥作用。