From the Department of Molecular and Cell Biology, University of California, Berkeley, California 94720-3220.
J Biol Chem. 2013 Nov 1;288(44):31549-55. doi: 10.1074/jbc.M113.510792. Epub 2013 Sep 9.
Peptidoglycan hydrolases are key enzymes in bacterial cell wall homeostasis. Understanding the substrate specificity and biochemical activity of peptidoglycan hydrolases in Mycobacterium tuberculosis is of special interest as it can aid in the development of new cell wall targeting therapeutics. In this study, we report biochemical and structural characterization of the mycobacterial N-acetylmuramyl-L-alanine amidase, Rv3717. The crystal structure of Rv3717 in complex with a dipeptide product shows that, compared with previously characterized peptidoglycan amidases, the enzyme contains an extra disulfide-bonded β-hairpin adjacent to the active site. The structure of two intermediates in assembly reveal that Zn(2+) binding rearranges active site residues, and disulfide formation promotes folding of the β-hairpin. Although Zn(2+) is required for hydrolysis of muramyl dipeptide, disulfide oxidation is not required for activity on this substrate. The orientation of the product in the active site suggests a role for a conserved glutamate (Glu-200) in catalysis; mutation of this residue abolishes activity. The product binds at the head of a closed tunnel, and the enzyme showed no activity on polymerized peptidoglycan. These results point to a potential role for Rv3717 in peptidoglycan fragment recycling.
肽聚糖水解酶是细菌细胞壁动态平衡的关键酶。了解结核分枝杆菌中肽聚糖水解酶的底物特异性和生化活性特别重要,因为这有助于开发新的细胞壁靶向治疗药物。在这项研究中,我们报告了分枝杆菌 N-乙酰胞壁酰-L-丙氨酸酰胺酶 Rv3717 的生化和结构特征。Rv3717 与二肽产物的复合物的晶体结构表明,与以前表征的肽聚糖酰胺酶相比,该酶在活性位点附近含有额外的二硫键结合的β发夹。组装过程中两个中间体的结构表明,Zn(2+)结合重排活性位点残基,二硫键形成促进β发夹折叠。尽管 Zn(2+)是水解 muramyl 二肽所必需的,但在该底物上,二硫键氧化不是活性所必需的。产物在活性位点的取向表明保守的谷氨酸 (Glu-200) 在催化中起作用;该残基的突变会使活性丧失。产物结合在封闭隧道的头部,并且该酶对聚合肽聚糖没有活性。这些结果表明 Rv3717 在肽聚糖片段再循环中可能发挥作用。