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大肠杆菌 K-12 拥有多种隐匿但功能正常的伴菌毛-菌毛通道 fimbriae,具有不同的表面特异性。

Escherichia coli K-12 possesses multiple cryptic but functional chaperone-usher fimbriae with distinct surface specificities.

机构信息

Institut Pasteur, Unité de Génétique des Biofilms, CNRS URA 2172, 25-28 rue du Dr Roux, 750724 Paris Cedex 15, France.

出版信息

Environ Microbiol. 2010 Jul;12(7):1957-77. doi: 10.1111/j.1462-2920.2010.02202.x. Epub 2010 Mar 23.

DOI:10.1111/j.1462-2920.2010.02202.x
PMID:20345943
Abstract

Commensal and pathogenic Escherichia coli adherence to host and environmental surfaces is mediated by a variety of adhesins. Although extensively studied as a model bacterium, 34% of the genes in the E. coli K-12 genome have no known function. We hypothesized that some of them may correspond to functional adhesins. We characterized E. coli K-12 ycb, ybg, yfc, yad, yra, sfm and yeh operons, which display sequence and organizational homologies to type 1 fimbriae exported by the chaperone/usher pathway. We showed that, although these operons are poorly expressed under laboratory conditions, six of them are nevertheless functional when expressed, and promote adhesion to abiotic and/or epithelial cell surfaces. While the studied fimbriae display different binding specificities, we obtained evidence of synergy/interference with other adhesins such as Ag43 or type 1 fimbriae. We showed that their expression is under the negative control of H-NS and, except for yad, subjected to cAMP receptor protein-mediated activation and carbon catabolite repression. These results therefore demonstrate that ycb, yfc, yad, yra, sfm and yeh operons encode cryptic but functional fimbriae adhesins whose expression following environmental modifications could contribute to E. coli's ability to adhere to and colonize a wide diversity of surfaces in its various ecological niches.

摘要

共生和病原性大肠杆菌通过多种黏附素附着在宿主和环境表面。尽管它被广泛研究为模式细菌,但大肠杆菌 K-12 基因组中 34%的基因没有已知的功能。我们假设其中一些可能对应于功能性黏附素。我们对大肠杆菌 K-12 的 ycb、ybg、yfc、yad、yra、sfm 和 yeh 操纵子进行了表征,这些操纵子在序列和组织上与伴侣/usher 途径导出的 I 型菌毛同源。我们表明,尽管这些操纵子在实验室条件下表达水平较低,但在表达时其中有 6 个仍然具有功能,并促进了对非生物和/或上皮细胞表面的黏附。虽然研究的菌毛具有不同的结合特异性,但我们获得了证据表明它们与其他黏附素(如 Ag43 或 I 型菌毛)存在协同作用/干扰。我们表明它们的表达受 H-NS 的负调控,并且除了 yad 之外,还受到 cAMP 受体蛋白介导的激活和碳源分解代谢物抑制的调控。因此,这些结果表明 ycb、yfc、yad、yra、sfm 和 yeh 操纵子编码隐匿但有功能的菌毛黏附素,其表达可随环境变化而改变,这有助于大肠杆菌在其各种生态位中黏附并定植于广泛的表面。

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