Hwang Jaiweon, Bieber David, Ramer Sandra W, Wu Cheng-Yen, Schoolnik Gary K
Department of Medicine (Infectious Diseases and Geographic Medicine), Stanford Medical School, Stanford, California 94305, USA.
J Bacteriol. 2003 Nov;185(22):6695-701. doi: 10.1128/JB.185.22.6695-6701.2003.
The type IV bundle-forming pili (BFP) of enteropathogenic Escherichia coli (EPEC) are required for virulence in orally challenged human volunteers and for the localized adherence and autoaggregation in vitro phenotypes. BFP filament biogenesis and function are encoded by the 14-gene bfp operon. The BFP assembly complex, containing a BfpB-His6 fusion protein, was chemically cross-linked in situ, and the complex was then purified from BFP-expressing EPEC by a combination of nickel- and BfpB antibody-based affinity chromatography. Characterization of the isolated complex by immunoblotting using BFP protein-specific antibodies showed that at least 10 of the 14 proteins specified by the bfp operon physically interact to form an oligomeric complex. Proteins localized to the outer membrane, inner membrane, and periplasm are within this complex, thus demonstrating that the complex spans the periplasmic space. A combination of immunofluorescence and immuno-gold thin-section transmission electron microscopy studies localized this complex to one pole of the cell.
肠道致病性大肠杆菌(EPEC)的IV型束状菌毛(BFP)对于经口感染的人类志愿者的致病性以及体外局部黏附和自聚集表型而言是必需的。BFP丝的生物合成和功能由14个基因的bfp操纵子编码。含有BfpB-His6融合蛋白的BFP组装复合物在原位进行化学交联,然后通过基于镍和BfpB抗体的亲和层析相结合的方法从表达BFP的EPEC中纯化该复合物。使用BFP蛋白特异性抗体通过免疫印迹对分离出的复合物进行表征,结果表明bfp操纵子指定的14种蛋白质中至少有10种发生物理相互作用以形成寡聚复合物。定位于外膜、内膜和周质的蛋白质都在该复合物中,因此表明该复合物跨越周质空间。免疫荧光和免疫金薄切片透射电子显微镜研究相结合,将该复合物定位在细胞的一极。