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首页> 外文期刊>Applied and Environmental Microbiology >Contribution of Conserved ATP-Dependent Proteases of Campylobacter jejuni to Stress Tolerance and Virulence
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Contribution of Conserved ATP-Dependent Proteases of Campylobacter jejuni to Stress Tolerance and Virulence

机译:空肠弯曲杆菌保守ATP依赖性蛋白酶对胁迫耐受性和毒力的贡献

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摘要

In prokaryotic cells the ATP-dependent proteases Lon and ClpP (Clp proteolytic subunit) are involved in the turnover of misfolded proteins and the degradation of regulatory proteins, and depending on the organism, these proteases contribute variably to stress tolerance. We constructed mutants in the lon and clpP genes of the food-borne human pathogen Campylobacter jejuni and found that the growth of both mutants was impaired at high temperature, a condition known to increase the level of misfolded protein. Moreover, the amounts of misfolded protein aggregates were increased when both proteases were absent, and we propose that both ClpP and Lon are involved in eliminating misfolded proteins in C. jejuni. In order to bind misfolded protein, ClpP has to associate with one of several Clp ATPases. Following inactivation of the ATPase genes clpA and clpX, only the clpX mutant displayed the same heat sensitivity as the clpP mutant, indicating that the ClpXP proteolytic complex is responsible for the degradation of heat-damaged proteins in C. jejuni. Notably, ClpP and ClpX are required for growth at 42°C, which is the temperature of the intestinal tract of poultry, one of the primary carriers of C. jejuni. Thus, ClpP and ClpX may be suitable targets of new intervention strategies aimed at reducing C. jejuni in poultry production. Further characterization of the clpP and lon mutants revealed other altered phenotypes, such as reduced motility, less autoagglutination, and lower levels of invasion of INT407 epithelial cells, suggesting that the proteases may contribute to the virulence of C. jejuni.
机译:在原核细胞中,ATP依赖性蛋白酶Lon和ClpP(Clp蛋白水解亚基)参与错折叠蛋白的周转和调节蛋白的降解,并且根据生物体的不同,这些蛋白酶对胁迫耐受性的贡献也不同。我们在食源性空肠弯曲菌空肠弯曲菌的lon和clpP基因中构建了突变体,发现这两个突变体的生长在高温下都会受到损害,这种情况已知会增加错折叠蛋白的水平。此外,当两种蛋白酶都不存在时,错误折叠的蛋白质聚集体的数量会增加,我们建议ClpP和Lon都参与消除空肠弯曲菌中错误折叠的蛋白质。为了结合错误折叠的蛋白质,ClpP必须与几种Clp ATPase之一结合。 ATPase基因clpA和clpX失活后,只有clpX突变体显示出与clpP突变体相同的热敏感性,表明ClpXP蛋白水解复合物负责空肠弯曲杆菌中热损伤蛋白的降解。值得注意的是,ClpP和ClpX是在42°C(空肠弯曲杆菌主要载体之一)的肠道温度所必需的。因此,ClpP和ClpX可能是旨在减少家禽生产中空肠弯曲杆菌的新干预策略的合适目标。 clpP和lon突变体的进一步表征揭示了其他改变的表型,例如运动性降低,更少的自体凝集和更低的INT407上皮细胞侵袭水平,这表明蛋白酶可能对空肠弯曲杆菌的致病力有所贡献。

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