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首页> 外文期刊>Acta crystallographica. Section D, Structural biology >Monomodular Pseudomonas aeruginosa phage JG004 lysozyme (Pae87) contains a bacterial surface-active antimicrobial peptide-like region and a possible substrate-binding subdomain
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Monomodular Pseudomonas aeruginosa phage JG004 lysozyme (Pae87) contains a bacterial surface-active antimicrobial peptide-like region and a possible substrate-binding subdomain

机译:Monomodular铜绿假单胞菌噬菌体JG004溶菌酶(Pae87)包含一个细菌表面活性的抗菌peptide-like地区和可能的substrate-binding子域名

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摘要

Phage lysins are a source of novel antimicrobials to tackle the bacterial antibiotic-resistance crisis. The engineering of phage lysins is being explored as a game-changing technological strategy to introduce a more precise approach in the way in which antimicrobial therapy is applied. Such engineering efforts will benefit from a better understanding of lysin structure and function. In this work, the antimicrobial activity of the endolysin from Pseudomonas aeruginosa phage JG004, termed Pae87, has been characterized. This lysin had previously been identified as an antimicrobial agent candidate that is able to interact with the Gram-negative surface and disrupt it. Further evidence is provided here based on a structural and biochemical study. A high-resolution crystal structure of Pae87 complexed with a peptidoglycan fragment showed a separate substrate-binding region within the catalytic domain, 18 angstrom away from the catalytic site and located on the opposite side of the lysin molecule. This substrate-binding region was conserved among phylogenetically related lysins lacking an additional cell-wall-binding domain, but not among those containing such a module. Two glutamic acids were identified to be relevant for the peptidoglycan-degradation activity, although the antimicrobial activity of Pae87 was seemingly unrelated. In contrast, an antimicrobial peptide-like region within the Pae87 C-terminus, named P87, was found to be able to actively disturb the outer membrane and display antibacterial activity by itself. Therefore, an antimicrobial mechanism for Pae87 is proposed in which the P87 peptide plays the role of binding to the outer membrane and disrupting the cell-wall function, either with or without the participation of the catalytic activity of Pae87.
机译:噬菌体细胞溶解酶是一种新型抗菌素的来源解决细菌抗药危机。探索作为一个改变游戏规则的技术策略引入一个更精确的方法的抗菌治疗应用。从一个更好的理解细胞溶解酶的结构和功能。endolysin从假单胞菌的活性绿脓杆菌噬菌体JG004,称为Pae87,一直为特征。识别作为抗菌剂的候选人能够与革兰氏阴性交互表面和破坏它。这里提供基于结构和生化研究。Pae87与肽聚糖混合结构片段显示一个单独的substrate-binding区域内的催化域,18埃从催化部位,位于对面的细胞溶解酶分子。substrate-binding地区是守恒的系统相关细胞溶解酶缺乏额外的cell-wall-binding域,但不是其中包含这样一个模块。氨基戊二酸被发现是相关的peptidoglycan-degradation活动,虽然Pae87似乎的抗菌活性不相关的。peptide-like地区Pae87内糖基,名叫P87,被发现能够积极打扰外膜和显示抗菌活性。抗菌机制Pae87提出了P87肽的角色绑定外膜和扰乱细胞壁的功能,要么有或没有参与Pae87的催化活性。

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