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首页> 外文期刊>Journal of molecular microbiology and biotechnology: JMMB >Biosynthesis of K88 Fimbriae in Escherichia coli: Interaction of Tip-Subunit FaeC with the Periplasmic Chaperone FaeE and the Outer Membrane Usher FaeD
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Biosynthesis of K88 Fimbriae in Escherichia coli: Interaction of Tip-Subunit FaeC with the Periplasmic Chaperone FaeE and the Outer Membrane Usher FaeD

机译:大肠杆菌中K88菌毛的生物合成:尖端亚基FaeC与周质伴侣FaeE和外膜迎来者FaeD的相互作用

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摘要

K88 fimbriae are ordered polymeric protein structures at the surface of enterotoxigenic Escherichia coli cells. Their production and assembly requires a molecular chaperone located in the periplasm (FaeE) and a molecular usher located in the outer membrane (FaeD). FaeC is the tip component of the K88 fimbriae. We studied the expression of the subcioned faeC gene, the subcellular localization of FaeC and its interaction with the chaperone and the outer membrane usher. In the absence of the chaperone or the usher, FaeC could not be detected in E. coli cells harbouring the faeC gene and its ribosome binding site under contol of the IPTG inducible Ipp.Iac promoter/operator. The expression of FaeC was detectable in the presence of chaperone FaeE, but a direct interaction between the chaperone and FaeC was not found. The expression of FaeC was also detectable in cells co-expressing the outer membrane usher FaeD. Overexpression of FaeC after changing the faeC ribosome binding site appearred to induce lethality. Expression of subcloned FaeC in the absence of FaeE or FaeD could be detected when faeC was cloned under the tight control of the ara promoter/operator and when lethality induction was avoided. The direct interaction of FaeC with outer membranes containing the usher FaeD was studied by cell fractionation, isopycnic sucrose density gradient centrifugation, SDS-PAGE and immunoblotting. FaeC was found to bind to outer membranes containing FaeD or a FaeD-PhoA hybrid construct containing 215 amino-terminal residues of FaeD. This binding was not observed when control outer membranes without FaeD were used No other K88 specific proteins were required for this interaction. The direct interaction between FaeC and FaeD in the outer membranes was shown by affinity blotting experiments. FaeE was not required for this interaction. Together these data indicate that the minor fimbrial subunit FaeC, unlike FaeG, H and F, does not have a strong interaction with the chaperone FaeE in the E. coli periplasm, but directly binds to the outer membrane molecular usher FaeD.
机译:K88菌毛是在产肠毒素的大肠杆菌细胞表面有序的聚合蛋白结构。它们的生产和组装需要位于周质(FaeE)中的分子伴侣和位于外膜(FaeD)中的分子引入分子。 FaeC是K88菌毛的尖端成分。我们研究了subcioned faeC基因的表达,FaeC的亚细胞定位及其与伴侣和外膜的相互作用。在没有伴侣或领主的情况下,在IPTG可诱导的Ipp.Iac启动子/操纵子的控制下,在携带faeC基因及其核糖体结合位点的大肠杆菌细胞中无法检测到FaeC。在分子伴侣FaeE的存在下可检测到FaeC的表达,但未发现分子伴侣与FaeC之间存在直接的相互作用。 FaeC的表达在共表达外膜的细胞中也可检测到FaeD。改变faeC核糖体结合位点后FaeC的过表达似乎导致致死性。当在ara启动子/操纵子的严格控制下克隆faeC并避免致死时,可以检测到FaeE或FaeD不存在时亚克隆FaeC的表达。通过细胞分级分离,等密度蔗糖密度梯度离心,SDS-PAGE和免疫印迹研究了FaeC与包含引信FaeD的外膜的直接相互作用。发现FaeC与含有FaeD的外膜或含有FaeD的215个氨基末端残基的FaeD-PhoA杂合构建体结合。当使用不带FaeD的对照外膜时未观察到这种结合,这种相互作用不需要其他K88特异性蛋白。通过亲和印迹实验显示了外膜中FaeC和FaeD之间的直接相互作用。此交互不需要FaeE。这些数据加在一起表明,与FaeG,H和F不同,次要纤维亚基FaeC与大肠杆菌周质中的分子伴侣FaeE没有强烈的相互作用,但直接结合到外膜分子上引入FaeD。

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