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首页> 外文期刊>Journal of bacteriology >The ADP-Ribosylating Toxin, AexT, from Aeromonas salmonicida subsp. salmonicida Is Translocated via a Type III Secretion Pathway
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The ADP-Ribosylating Toxin, AexT, from Aeromonas salmonicida subsp. salmonicida Is Translocated via a Type III Secretion Pathway

机译:来自鲑鱼气单胞菌亚种的ADP-核糖基化毒素AexT。沙门氏菌通过III型分泌途径易位

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摘要

AexT is an extracellular ADP ribosyltransferase produced by the fish pathogen Aeromonas salmonicida subsp. salmonicida. The protein is secreted by the bacterium via a recently identified type III secretion system. In this study, we have identified a further 12 open reading frames that possess high homology to genes encoding both structural and regulatory components of the Yersinia type III secretion apparatus. Using marker replacement mutagenesis of aopB, the A. salmonicida subsp. salmonicida homologue of yopB in Yersinia, we demonstrate that the bacterium translocates the AexT toxin directly into the cytosol of cultured fish cells via this type III secretion pathway. An acrV mutant of A. salmonicida subsp. salmonicida displays a calcium-blind phenotype, expressing and secreting significant amounts of AexT even in the presence of CaCl2 concentrations as high as 10 mM. This acrV mutant is also unable to translocate AexT into the cytosol of fish cells, indicating AcrV is involved in the translocation process. Inactivation of either the aopB or acrV gene in A. salmonicida subsp. salmonicida (resulting in an inability to translocate AexT) is accompanied by a loss of cytotoxicity that can be restored by trans complementation. Finally, we present data indicating that preincubation of the wild-type bacteria with antibodies directed against recombinant AcrV-His protein provides fish cells protection against the toxic effects of the bacterium.
机译:AexT是由鱼病原体 Aeromonas salicida 亚种产生的细胞外ADP核糖基转移酶。 salmonicida 。该蛋白质通过最近鉴定的III型分泌系统由细菌分泌。在这项研究中,我们确定了另外12个开放阅读框,它们与编码 Yersinia III型分泌设备的结构和调节成分的基因具有高度同源性。使用 aopB A)的标记替换诱变。鲑科亚种在耶尔森氏菌 yopB salmonicida 同源物,我们证明该细菌通过这种III型分泌将AexT毒素直接转移到养殖鱼细胞的细胞质中途径。 A的 acrV 突变体。鲑科亚种 salmonicida 表现出钙盲表型,即使在浓度高达10 mM的CaCl 2 的存在下也表达和分泌大量AexT。该 acrV 突变体也无法将AexT易位到鱼细胞的细胞质中,表明AcrV参与了易位过程。 A中的 aopB acrV 基因失活。鲑科亚种沙门氏菌(导致无法转运AexT)伴随着细胞毒性的丧失,可以通过 trans 互补来恢复。最后,我们提出的数据表明,将野生型细菌与针对重组AcrV-His蛋白的抗体进行预培养后,可为鱼类细胞提供针对该细菌毒性作用的保护。

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