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Role of the Enterococcus faecalis GelE Protease in Determination of Cellular Chain Length, Supernatant Pheromone Levels, and Degradation of Fibrin and Misfolded Surface Proteins

机译:粪肠球菌GelE蛋白酶在确定细胞链长度,上清信息素水平以及纤维蛋白和错误折叠的表面蛋白降解中的作用

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摘要

Gelatinase (GelE), a secreted Zn-metalloprotease of Enterococcus faecalis, has been implicated as a virulence factor by both epidemiological data and animal model studies. Expression of gelE is induced at a high cell density by the fsr quorum-sensing system. In the present study, GelE was shown to be responsible for the instability of a number of Asc10 (aggregation substance) mutant proteins, implying that GelE functions to clear the bacterial cell surface of misfolded proteins. Disruption of GelE production led to increased cell chain length of E. faecalis, from a typical diplococcus morphology to chains of 5 to 10 cells. This function of GelE was also exhibited when the protein was expressed in Streptococcus pyogenes. GelE-expressing E. faecalis strains were more autolytic, suggesting that GelE affects chain length through activation of an autolysin. GelE was also essential for degradation of polymerized fibrin. GelE expression reduced the titer of cCF10, the peptide pheromone that induces conjugation of pCF10, and pCF10 had increased conjugation into non-GelE-expressing strains. These new functions attributed to GelE suggest that it acts to increase the dissemination of E. faecalis in high-density environments.
机译:明胶酶(GelE)是粪肠球菌的一种分泌型锌金属蛋白酶,根据流行病学数据和动物模型研究均被认为是一种致病因子。 fsr群体感应系统在高细胞密度下诱导gelE的表达。在本研究中,GelE被证明是造成许多Asc10(聚集物质)突变蛋白不稳定的原因,这表明GelE的作用是清除错折叠蛋白的细菌细胞表面。 GelE产生的中断导致粪肠球菌的细胞链长度增加,从典型的双球菌形态到5至10个细胞的链。当在化脓性链球菌中表达蛋白质时,GelE的这种功能也被展现出来。表达GelE的粪肠球菌菌株更具自溶性,表明GelE通过自溶素的活化影响链长。 GelE对于降解聚合纤维蛋白也是必不可少的。 GelE的表达降低了cCF10的滴度,cCF10是诱导pCF10结合的肽信息素,而pCF10与非GelE表达菌株的结合增加。这些归因于GelE的新功能表明,它在高密度环境中起到了增加粪肠球菌传播的作用。

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