Department of Biology (Area 10), Department of Chemistry, University of York, York YO10 5DD, UK.
Biochem J. 2012 Dec 15;448(3):329-41. doi: 10.1042/BJ20121164.
The murein peptide amidase MpaA is a cytoplasmic enzyme that processes peptides derived from the turnover of murein. We have purified the enzyme from Escherichia coli and demonstrated that it efficiently hydrolyses the γ-D-glutamyl-diaminopimelic acid bond in the murein tripeptide (L-Ala-γ-D-Glu-meso-Dap), with Km and kcat values of 0.41±0.05 mM and 38.3±10 s-1. However, it is unable to act on the murein tetrapeptide (L-Ala-γ-D-Glu-meso-Dap-D-Ala). E. coli MpaA is a homodimer containing one bound zinc ion per chain, as judged by mass spectrometric analysis and size-exclusion chromatography. To investigate the structure of MpaA we solved the crystal structure of the orthologous protein from Vibrio harveyi to 2.17 Å (1Å=0.1 nm). Vh_MpaA, which has identical enzymatic and biophysical properties to the E. coli enzyme, has high structural similarity to eukaryotic zinc carboxypeptidases. The structure confirms that MpaA is a dimeric zinc metalloprotein. Comparison of the structure of MpaA with those of other carboxypeptidases reveals additional structure that partially occludes the substrate-binding groove, perhaps explaining the narrower substrate specificity of the enzyme compared with other zinc carboxypeptidases. In γ-proteobacteria mpaA is often located adjacent to mppA which encodes a periplasmic transporter protein previously shown to bind murein tripeptide. We demonstrate that MppA can also bind murein tetrapeptide with high affinity. The genetic coupling of these genes and their related biochemical functions suggest that MpaA amidase and MppA transporter form part of a catabolic pathway for utilization of murein-derived peptides that operates in γ-proteobacteria in addition to the established murein recycling pathways.
细胞壁肽聚糖 amidase MpaA 是一种细胞质酶,可处理来自细胞壁周转的肽。我们已从大肠杆菌中纯化了该酶,并证明它能有效地水解细胞壁三肽(L-Ala-γ-D-Glu-meso-Dap)中的 γ-D-谷氨酰-diaminopimelic 键,Km 和 kcat 值分别为 0.41±0.05 mM 和 38.3±10 s-1。然而,它不能作用于细胞壁四肽(L-Ala-γ-D-Glu-meso-Dap-D-Ala)。根据质谱分析和凝胶过滤色谱分析,大肠杆菌 MpaA 是一种含有一个结合锌离子的同源二聚体。为了研究 MpaA 的结构,我们解析了来自哈维氏弧菌的同源蛋白的晶体结构,分辨率为 2.17 Å(1Å=0.1 nm)。Vh_MpaA 与大肠杆菌酶具有相同的酶学和生物物理特性,与真核锌羧肽酶具有高度的结构相似性。该结构证实 MpaA 是一种二聚锌金属蛋白酶。将 MpaA 的结构与其他羧肽酶的结构进行比较,揭示了部分阻塞底物结合槽的额外结构,这可能解释了该酶与其他锌羧肽酶相比底物特异性较窄的原因。在 γ-变形菌中,mpaA 通常位于 mppA 旁边,mppA 编码一种先前被证明能结合细胞壁三肽的周质转运蛋白。我们证明 MppA 也能与细胞壁四肽高亲和力结合。这些基因的遗传偶联及其相关的生化功能表明,MpaA 酰胺酶和 MppA 转运蛋白形成了细胞壁衍生肽分解代谢途径的一部分,该途径除了已建立的细胞壁循环途径外,还在 γ-变形菌中起作用。