Wilson Rosalind A, Maughan William N, Kremer Laurent, Besra Gurdyal S, Fütterer Klaus
School of Biosciences, The University of Birmingham, Edgabston, Birmingham B15 2TT, UK.
J Mol Biol. 2004 Jan 9;335(2):519-30. doi: 10.1016/j.jmb.2003.11.001.
Mycobacterium tuberculosis, the causative agent of tuberculosis, is known to secrete a number of highly immunogenic proteins that are thought to confer pathogenicity, in part, by mediating binding to host tissues. Among these secreted proteins are the trimeric antigen 85 (Ag85) complex and the related MPT51 protein, also known as FbpC1. While the physiological function of Ag85, a mycolyltransferase required for the biosynthesis of the cell wall component alpha,alpha'-trehalose dimycolate (or cord factor), has been identified recently, the function of the closely related MPT51 (approximately 40% identity with the Ag85 components) remains to be established. The crystal structure of M.tuberculosis MPT51, determined to 1.7 A resolution, shows that MPT51, like the Ag85 components Ag85B and Ag85C2, folds as an alpha/beta hydrolase, but it does not contain any of the catalytic elements required for mycolyltransferase activity. Moreover, the absence of a recognizable alpha,alpha'-trehalose monomycolate-binding site and the failure to detect an active site suggest that the function of MPT51 is of a non-enzymatic nature and that MPT51 may in fact represent a new family of non-catalytic alpha/beta hydrolases. Previous experimental evidence and the structural similarity to some integrins and carbohydrate-binding proteins led to the hypothesis that MPT51 might have a role in host tissue attachment, whereby ligands may include the serum protein fibronectin and small sugars.
结核分枝杆菌是结核病的病原体,已知它能分泌多种高度免疫原性蛋白,这些蛋白被认为部分通过介导与宿主组织的结合而赋予致病性。这些分泌蛋白包括三聚体抗原85(Ag85)复合物和相关的MPT51蛋白,也称为FbpC1。虽然Ag85的生理功能已在近期得到确定,Ag85是细胞壁成分α,α'-海藻糖二甲酯(或索状因子)生物合成所需的一种分枝菌酸转移酶,但与之密切相关的MPT51(与Ag85成分约40%的同源性)的功能仍有待确定。结核分枝杆菌MPT51的晶体结构分辨率达到1.7 Å,结果显示MPT51与Ag85成分Ag85B和Ag85C2一样,折叠成α/β水解酶,但它不包含分枝菌酸转移酶活性所需的任何催化元件。此外,缺乏可识别的α,α'-海藻糖单甲酯结合位点且未检测到活性位点,这表明MPT51的功能是非酶性的,实际上MPT51可能代表一个新的非催化性α/β水解酶家族。先前的实验证据以及与某些整合素和碳水化合物结合蛋白的结构相似性,使得人们推测MPT51可能在宿主组织附着中发挥作用,其配体可能包括血清蛋白纤连蛋白和小糖。