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Detailed Soluble Proteome Analyses of a Dairy-Isolated Enterococcus faecalis: A Possible Approach to Assess Food Safety and Potential Probiotic Value

机译:乳制品隔离粪肠球菌的详细可溶性蛋白质组学分析:评估食品安全性和潜在益生菌价值的一种可能方法

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摘要

Enterococci are common inhabitants of the gastrointestinal tracts of humans and animals and thanks to their capability to tolerate different environmental conditions and their high rates of gene transfer, they are able to colonize various ecological niches, as food matrices. Enterococcus faecalis bacteria are defined as controversial microorganisms. From one side they are used as food starters, bio-control agents and probiotics to improve human or animal health. From the other side, in the last two decades enterococci have emerged as important nosocomial pathogens, because bearing high-level of resistance to antibiotics and several putative virulence factors. In this study, the soluble proteome quantitation data (LC-MS/MS) of the food-isolated strain E. faecalis D27 (dairy-isolate) was compared with the soluble proteome quantitation data of the pathogenic E. faecalis UW3114 (urinary tract infection isolate) and with the one of the health promoting strain E. faecalis Symbioflor1, respectively. The comparison of cytosolic protein expression profiles highlighted statistically significant changes in the abundance of proteins mainly involved in specific metabolic pathways, nutrient transport, stress response, and cell wall modulation. Moreover, especially in the dairy isolate and the clinical isolate, several proteins with potential pathogenic implications were found, such as serine proteases, von Willebrand factor, serine hydrolase with beta lactamase activity, efflux transporter, and proteins involved in horizontal gene transfer. The analysis of the extracellular proteome provided interesting results concerning proteins involved in bacterial communication, such as pheromones and conjugative elements and also proteins able to interact with human components. The phenotypic characterization evaluating (i) biofilm formation (ii) hemolytic activity on blood agar plates (iii) protease activity (iv) gelatinase (v) antibiotic resistance pattern, enabled us to elucidate the risks associated with the poor characterized foodborne E. faecalis D27.
机译:肠球菌是人类和动物胃肠道的常见居民,由于它们具有耐受不同环境条件的能力和高基因转移率,因此它们能够在各种生态位中定殖,成为食物基质。粪肠球菌被定义为有争议的微生物。从一方面来说,它们被用作食品起子,生物控制剂和益生菌,以改善人类或动物的健康。另一方面,在过去的二十年中,肠球菌已成为重要的医院病原体,因为它们对抗生素具有很高的抗药性,并具有几种假定的致病因子。在这项研究中,将食品分离的粪肠球菌D27(乳品分离株)的可溶性蛋白质组定量数据(LC-MS / MS)与致病性粪肠球菌UW3114(尿路感染)的可溶性蛋白质组定量数据进行了比较。分离株)和一种健康促进菌株粪肠球菌Symbioflor1。胞浆蛋白表达谱的比较突出了统计上显着变化的蛋白丰度,主要涉及特定的代谢途径,营养物质转运,应激反应和细胞壁调节。此外,尤其是在乳品分离株和临床分离株中,发现了几种具有潜在病原学意义的蛋白质,例如丝氨酸蛋白酶,von Willebrand因子,具有β内酰胺酶活性的丝氨酸水解酶,外排转运蛋白和涉及水平基因转移的蛋白质。细胞外蛋白质组的分析提供了有趣的结果,涉及细菌通讯中涉及的蛋白质,例如信息素和结合元素,以及能够与人成分相互作用的蛋白质。表型表征评估(i)生物膜形成(ii)血琼脂板上的溶血活性(iii)蛋白酶活性(iv)明胶酶(v)抗生素抗性模式,使我们能够阐明与特征性较差的食源性粪肠球菌D27相关的风险。

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