Zalewska-Piatek Beata, Bury Katarzyna, Piatek Rafal, Bruzdziak Piotr, Kur Józef
Department of Microbiology, Gdańsk University of Technology, ul G Narutowicza 11/12, 80-952 Gdańsk, Poland.
J Bacteriol. 2008 Jul;190(14):5044-56. doi: 10.1128/JB.00224-08. Epub 2008 May 23.
The virulence of the uropathogenic Escherichia coli Dr(+) IH11128 strain is associated with the presence of Dr fimbrial structures and a DraD invasin which can act as a fimbrial capping domain at the bacterial cell surface. However, a recent study suggests that the DraD protein is surface exposed in two forms: fimbria associated and fimbria nonassociated (prone to interaction with the N-terminal extension of the DraE protein located on the fimbrial tip). The actual mechanism of DraD surface secretion is presently unknown. We identified a previously unrecognized type II secretory pathway (secreton) in the uropathogenic E. coli Dr(+) strain which is well conserved among gram-negative bacteria and used mainly for secretion of virulence determinants. An active secreton is composed of 12 to 15 different proteins, among which GspD functions as an outer-membrane channel to permit extrusion of proteins in a folded state. Therefore, we inactivated the pathway by inserting the group II intron into a gspD gene of the type II secretion machinery by site-specific recombination. DraD secretion by the E. coli Dr(+) and gspD mutant strains was determined by immunofluorescence microscopy (with antibodies raised against DraD) and an assay of cell binding between bacteria and HeLa cells. The specificity of DraD-mediated bacterial binding for the integrin receptor was confirmed by examination of the adhesion of DraD-coated beads to HeLa cells in the presence and absence of alpha(5)beta(1) monoclonal antibodies. The investigations that we performed showed that type II secretion in E. coli Dr(+) strains leads to DraD translocation at the bacterial cell surfaces.
尿路致病性大肠杆菌Dr(+) IH11128菌株的毒力与Dr菌毛结构和DraD入侵素的存在有关,DraD入侵素可作为细菌细胞表面的菌毛封端结构域。然而,最近的一项研究表明,DraD蛋白以两种形式暴露于表面:与菌毛相关和与菌毛不相关(易于与位于菌毛尖端的DraE蛋白的N端延伸相互作用)。DraD表面分泌的实际机制目前尚不清楚。我们在尿路致病性大肠杆菌Dr(+)菌株中鉴定出一种以前未被认识的II型分泌途径(分泌装置),这种途径在革兰氏阴性细菌中高度保守,主要用于分泌毒力决定因素。一个活跃的分泌装置由12至15种不同的蛋白质组成,其中GspD作为外膜通道,允许折叠状态的蛋白质挤出。因此,我们通过位点特异性重组将II组内含子插入II型分泌机制的gspD基因中,从而使该途径失活。通过免疫荧光显微镜(用针对DraD的抗体)以及细菌与HeLa细胞之间的细胞结合试验,测定大肠杆菌Dr(+)和gspD突变菌株中DraD的分泌情况。通过检测在存在和不存在α(5)β(1)单克隆抗体的情况下,包被DraD的珠子与HeLa细胞的粘附情况,证实了DraD介导的细菌与整合素受体结合的特异性。我们进行的研究表明,大肠杆菌Dr(+)菌株中的II型分泌导致DraD在细菌细胞表面移位。