肽聚糖
机制(生物学)
古细菌
催化作用
化学
细菌
微生物学
生物物理学
生物
生物化学
物理
细胞壁
遗传学
基因
量子力学
作者
Leizhou Guo,Yibo Zhu,Ninglin Zhao,Huan Leng,Shuxin Wang,Qing Yang,Pengyan Zhao,Yi Chen,Guihong Cha,Li‐Ping Bai,Rui Bao
标识
DOI:10.1016/j.ijbiomac.2025.139672
摘要
Archaeal peptidoglycan, a crucial component of the cell walls of Methanobacteria and Methanopyri, enhances the tightness of methanogenic cells and their resistance to known lytic enzymes and antibiotics. Although archaeal peptidoglycan endoisopeptidases (Pei) can reportedly degrade archaeal peptidoglycan, their biochemistry is still largely unknown. In this study, we investigated the activity and catalytic properties of the endoisopeptidases PeiW and PeiP using synthesized isopeptides identical to natural substrates. Enzymatic assays demonstrated their distinct substrate specificity and cleavage efficiency. The crystal structure of Pei revealed a catalytic mechanism resembling that of cysteine peptidases that use the 'CHD' triad to cleave isopeptide bonds. We also identified several key residues in the substrate binding site that confer recognition specificity, including Y174, V252 and C265. Based on the residues present in the active site and their influence on activity, we propose a classification of the archaeal peptidoglycan endoisopeptide family into four categories to facilitate the identification of new archaeal peptidases in the future. These insights into the structure and function of Pei suggest new strategies for use in methanogen biotechnology.
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