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Inactivation of two haemolytic toxin genes in Aeromonas hydrophila attenuates virulence in a suckling mouse model

机译:在乳胶液中的疏水液中两种血液解性毒素基因的失活衰减乳胶小鼠模型中的毒力

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The contribution of two unrelated Aeromonas hydrophila β-haemolytic toxins to virulence was assessed in a suckling mouse model. The first haemolysin gene, isolated from an A. hydrophila A6 cosmid bank, encoded a potential gene product of 621 amino acids and a predicted molecular size of 69.0 kDa. The inferred amino acid sequence showed 89% identity to the AHH1 haemolysin of A. hydrophila ATCC 7966, and 51% identity to the HlyA haemolysin of Vibrio cholerae El Tor strain O17. The second haemolysin gene (designated aerA), which encodes aerolysin, a pore-forming toxin, was partially cloned by PCR for the purpose of mutant construction. This PCR product was a 1040 bp fragment from the C-terminal region of aerA. It is proposed that the 69.0 kDa V. cholerae-HlyA-like haemolysin gene be termed hlyA to contrast with the aerA terminology for the aerolysin. A suicide vector was used to inactivate both the hlyA and aerA genes in A. hydrophila A6. When assessed in the suckling mouse model, only the hlyA aerA double mutant showed a statistically significant reduction in virulence - a 20-fold change in LD50 (Scheffe test, P0.05). Cytotoxicity to buffalo green monkey kidney cell monolayers and haemolysis on horse blood agar were eliminated only in the hlyA aerA double mutants. This is the first report of cloning and mutagenesis of two unrelated haemolytic toxin genes in the same strain of a mesophilic aeromonad. For A. hydrophila, a two-toxin model provides a more complete explanation of virulence.
机译:在乳胶小鼠模型中评估了两个不相关的航空疏水液β-溶血性毒素对毒力的贡献。从A.疏水物A6粘膜组中分离的第一种寄生素基因编码了621个氨基酸的潜在基因产物,预测分子大小为69.0kDa。推断的氨基酸序列显示于A.疏水层ATCC 7966的AHH1溶血素和51℃的Hlya霍乱菌菌株O17的Hlya Haemolysin的同一性89 %同一性。通过PCR为突变构建的目的,通过PCR部分克隆了编码Acolysin的第二种氧血素基因(指定Aera),其部分克隆。该PCR产物是来自Aera的C末端区域的1040bp片段。提出,69.0kDa V.Cholera-hlya样血溶酪素基因被称为Hlya以与Aerolysin的Aera术语形成对比。自杀载体用于在A.疏水层A6中灭活Hlya和Aera基因。在乳鼠模型中评估时,只有Hlya Aera双突变体均显示出毒力的统计显着降低 - LD50的20倍变化(Scheffe测试,P <0.05)。仅在Hlya Aera双突变体中消除了对水牛绿猴肾细胞单层和溶血性的细胞毒性。这是同一嗜渗硫核菌菌株中两个不相关的溶血毒素基因的克隆和诱变的第一报告。对于A.疏水液,双毒素模型提供了一种更完整的毒力解释。

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