State Key Laboratory of Bioreactor Engineering, East China University of Science and Technology, Shanghai, 200237, China.
Southern Marine Science and Engineering Guangdong Laboratory (Zhuhai), 519000, Zhuhai, China; Shanghai Engineering Research Center of Maricultured Animal Vaccines, Shanghai, 200237, China.
Microb Pathog. 2021 Dec;161(Pt A):105194. doi: 10.1016/j.micpath.2021.105194. Epub 2021 Sep 15.
Edwardsiella piscicida, as an important pathogen of fish, has caused huge losses in aquaculture. The virulence in E. piscicida has been increasingly concerned, but few studies have focused on the relationship between virulence and protein secretion homeostasis. FtsH, as a member of the AAA protease family, has important cellular functions, such as controlling the quality of membrane proteins. In this study, FtsH was demonstrated to be essential in maintaining protein secretion homeostasis, and its deletion could result in the secretion of massive cytoplasmic proteins by non-classical secretion pathway. Furthermore it was showed that FtsH is vital for E. piscicida to proliferate within host cells, and E. piscicida mutant ΔftsH will be obviously attenuated. After zebrafish was infected with the mutant ΔftsH, the lethality rate for zebrafish and the bacterial colonization in its organs were greatly reduced. These results suggested that FtsH, as a regulatory factor, closely linked protein secretory homeostasis with bacterial virulence, which provided clues for further exploring the involvement of protein secretion homeostasis in bacterial virulence.
爱德华氏菌是鱼类的一种重要病原体,已对水产养殖业造成巨大损失。爱德华氏菌的毒力越来越受到关注,但很少有研究关注毒力与蛋白质分泌平衡之间的关系。FtsH 作为 AAA 蛋白酶家族的一员,具有重要的细胞功能,如控制膜蛋白的质量。本研究表明,FtsH 对维持蛋白质分泌平衡至关重要,其缺失可导致大量细胞质蛋白通过非经典分泌途径分泌。此外,研究还表明,FtsH 对鱼类爱德华氏菌在宿主细胞内增殖至关重要,鱼类爱德华氏菌突变株ΔftsH 的增殖能力明显减弱。用突变株ΔftsH 感染斑马鱼后,斑马鱼的致死率及其器官中的细菌定植量大大降低。这些结果表明,FtsH 作为一种调节因子,将蛋白质分泌平衡与细菌毒力紧密联系起来,为进一步探索蛋白质分泌平衡在细菌毒力中的作用提供了线索。