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Afa/Dr黏附素DraE及其与氯霉素相互作用的高分辨率研究。

High resolution studies of the Afa/Dr adhesin DraE and its interaction with chloramphenicol.

作者信息

Pettigrew David, Anderson Kirstine L, Billington Jason, Cota Ernesto, Simpson Peter, Urvil Petri, Rabuzin Filip, Roversi Pietro, Nowicki Bogdan, du Merle Laurence, Le Bouguénec Chantal, Matthews Stephen, Lea Susan M

机构信息

Laboratory of Molecular Biophysics, Department of Biochemistry, University of Oxford, South Parks Road, Oxford OX1 3QU, United Kingdom.

出版信息

J Biol Chem. 2004 Nov 5;279(45):46851-7. doi: 10.1074/jbc.M409284200. Epub 2004 Aug 24.

Abstract

Pathogenic Escherichia coli expressing Afa/Dr adhesins are able to cause both urinary tract and diarrheal infections. The Afa/Dr adhesins confer adherence to epithelial cells via interactions with the human complement regulating protein, decay accelerating factor (DAF or CD55). Two of the Afa/Dr adhesions, AfaE-III and DraE, differ from each other by only three residues but are reported to have several different properties. One such difference is disruption of the interaction between DraE and CD55 by chloramphenicol, whereas binding of AfaE-III to CD55 is unaffected. Here we present a crystal structure of a strand-swapped trimer of wild type DraE. We also present a crystal structure of this trimer in complex with chloramphenicol, as well as NMR data supporting the binding position of chloramphenicol within the crystal. The crystal structure reveals the precise atomic basis for the sensitivity of DraE-CD55 binding to chloramphenicol and demonstrates that in contrast to other chloramphenicol-protein complexes, drug binding is mediated via recognition of the chlorine "tail" rather than via intercalation of the benzene rings into a hydrophobic pocket.

摘要

表达Afa/Dr黏附素的致病性大肠杆菌能够引起尿路感染和腹泻感染。Afa/Dr黏附素通过与人补体调节蛋白衰变加速因子(DAF或CD55)相互作用,实现对上皮细胞的黏附。两种Afa/Dr黏附素,即AfaE-III和DraE,彼此仅相差三个残基,但据报道具有几种不同的特性。其中一个差异是氯霉素会破坏DraE与CD55之间的相互作用,而AfaE-III与CD55的结合不受影响。在此,我们展示了野生型DraE链交换三聚体的晶体结构。我们还展示了该三聚体与氯霉素复合物的晶体结构,以及支持氯霉素在晶体内结合位置的核磁共振数据。晶体结构揭示了DraE-CD55结合对氯霉素敏感的精确原子基础,并表明与其他氯霉素-蛋白质复合物不同,药物结合是通过识别氯“尾”介导的,而不是通过苯环插入疏水口袋。

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