Tissue Engineering Group, Universidad Nacional de Colombia, Carrera 45#26-85, Bogotá, Colombia.
Microb Pathog. 2013 Apr;57:62-9. doi: 10.1016/j.micpath.2012.11.007. Epub 2012 Nov 19.
Initial Enterococcus faecalis-endothelial cell molecular interactions which lead to enterococci associating in the host endothelial tissue, colonizing it and proliferating there can be assessed using in vitro models. Cultured human umbilical vein endothelial cells (HUVEC) have been used to study other Gram-positive bacteria-cell interactions; however, few studies have been aimed at establishing the relationship of E. faecalis with endothelial cells. The aggregation substance (AS) family of adhesins represents an E. faecalis virulence factor which has been implicated in endocarditis severity and bacterial persistence. The Asc10 protein (a member of this family) promotes bacterium-bacterium aggregation and bacterium-host cell binding. Evaluating Asc10 role in bacterial internalization by cultured enterocytes has shown that this adhesin facilitates E. faecalis endocytosis by HT-29 cells. A few eukaryotic cell structural components, such as cytoskeletal proteins, have been involved in E. faecalis entry into cell-lines; it is thus relevant to determine whether Asc10, as well as microtubules and actin microfilaments, play a role in E. faecalis internalization by cultured endothelial cells. The role of Asc10 and cytoskeleton proteins in E. faecalis ability to enter HUVEC was assessed in the present study, as well as cell apoptosis induction by enterococcal internalization by HUVEC; the data indicated increased cell apoptosis and that cytoskeleton components were partially involved in E. faecalis entry to endothelial cells, thereby suggesting that E. faecalis Asc10 protein would not be a critical factor for bacterial entry to cultured HUVEC.
初始的屎肠球菌-内皮细胞分子相互作用,导致肠球菌在宿主内皮组织中聚集、定植和增殖,可以通过体外模型进行评估。培养的人脐静脉内皮细胞(HUVEC)已被用于研究其他革兰氏阳性菌-细胞相互作用;然而,很少有研究旨在建立肠球菌与内皮细胞的关系。聚集物质(AS)家族的黏附素是肠球菌的一种毒力因子,与心内膜炎的严重程度和细菌的持久性有关。Asc10 蛋白(该家族的成员)促进细菌-细菌聚集和细菌-宿主细胞结合。评估 Asc10 在培养的肠上皮细胞内化中的作用表明,这种黏附素促进了 HT-29 细胞中肠球菌的内吞作用。一些真核细胞的结构成分,如细胞骨架蛋白,已被涉及肠球菌进入细胞系;因此,确定 Asc10 以及微管和肌动蛋白微丝是否在肠球菌内化进入培养的内皮细胞中起作用是相关的。本研究评估了 Asc10 和细胞骨架蛋白在肠球菌进入 HUVEC 中的作用,以及肠球菌内化引起的 HUVEC 细胞凋亡;数据表明细胞凋亡增加,细胞骨架成分部分参与肠球菌进入内皮细胞,提示肠球菌 Asc10 蛋白不是细菌进入培养的 HUVEC 的关键因素。