首页> 美国卫生研究院文献>Applied and Environmental Microbiology >In Vitro and In Vivo Studies of the Yrp1 Protease from Yersinia ruckeri and Its Role in Protective Immunity against Enteric Red Mouth Disease of Salmonids
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In Vitro and In Vivo Studies of the Yrp1 Protease from Yersinia ruckeri and Its Role in Protective Immunity against Enteric Red Mouth Disease of Salmonids

机译:鼠疫耶尔森氏菌Yrp1蛋白酶的体外和体内研究及其在鲑鱼肠道红口病保护性免疫中的作用

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摘要

Yersinia ruckeri, the etiological agent of the enteric red mouth disease (ERM) of salmonids, produces Yrp1, a serralysin metalloprotease involved in pathogenesis. We describe here the hydrolytic and immunogenic properties of Yrp1. The protease was able to hydrolyze different matrix and muscle proteins as laminin, fibrinogen, gelatine, actin, and myosin but not type II and IV collagens. In addition, the Yrp1 protein, when inactivated by heat and used as an immunogen, was able to elicit a strong protection against the development of ERM. The analysis of different Y. ruckeri strains with (Azo+) or without (Azo) Yrp1 activity showed that all of them contained the yrp1 operon. By using yrp1::lacZ operon fusions, protease production analysis, and complementation studies, it was possible to show that an Azo strain was blocked at the transcription level. The transcriptional study of the yrp1 operon under different environmental conditions showed that it was regulated by osmolarity and temperature, without pH influence. Finally, when β-galactosidase activity was used as a probe in vivo, the progression of the disease in the fish could be visualized, and the tropism of the bacterium and affected organs could be defined. This system opens a vast field of study not only with regard to fish disease progression but also in pathogen interactions, temporal gene expression, carrier stages, antibiotic resistance selection, etc.
机译:鲑鱼肠红口病(ERM)的病原体耶尔森氏菌Ruckeri产生Yrp1,一种参与发病机理的赛拉溶素金属蛋白酶。我们在这里描述Yrp1的水解和免疫原性。该蛋白酶能够水解不同的基质和肌肉蛋白,如层粘连蛋白,纤维蛋白原,明胶,肌动蛋白和肌球蛋白,但不能水解II型和IV型胶原。另外,当被热灭活并用作免疫原时,Yrp1蛋白能够引发针对ERM形成的强大保护作用。对具有(Azo + )或不具有(Azo -)Yrp1活性的不同耶鲁酵母菌株的分析表明,它们都含有yrp1操纵子。通过使用yrp1 :: lacZ操纵子融合,蛋白酶生产分析和互补研究,有可能表明Azo -菌株在转录水平被阻断。 yrp1操纵子在不同环境条件下的转录研究表明,它受渗透压和温度的调节,而不受pH的影响。最后,当将β-半乳糖苷酶活性用作体内探针时,可以看到鱼中疾病的进展,并且可以确定细菌和受影响器官的向性。该系统不仅在鱼类疾病进展方面,而且在病原体相互作用,时间基因表达,载体阶段,抗生素抗性选择等方面都开辟了广阔的研究领域。

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