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噬菌体编码蛋白在细菌幽灵生产中的利用:一个小型综述。

Bacteriophage-encoded protein utilization in bacterial ghost production: a mini-review.

机构信息

State Key Laboratory of Marine Food Processing & Safety Control, College of Food Science and Engineering, Ocean University of China, Qingdao, 266400, China.

出版信息

World J Microbiol Biotechnol. 2024 Jul 29;40(9):284. doi: 10.1007/s11274-024-04091-y.

Abstract

Bacterial ghosts (BGs) are described as bacterial cell envelopes that retain their structure but lack cytoplasmic contents. The study of BGs spans multiple disciplinary domains, and the development of BG production techniques to obtain ample and stable BG samples holds significant implications for probing the biological characteristics of BGs, devising novel disease treatment strategies, and leveraging their industrial applications. Numerous products encoded within bacteriophage (phage) genomes possess the capability to lyse bacteria, thereby inducing BG formation primarily via disruption of bacterial cell wall integrity. This review comprehensively surveys the utilization of phage-encoded proteins in BG production techniques, encompassing methodologies such as phage E protein-mediated lysis, perforin protein-induced lysis, and strategies combining E protein with holin-endolysin systems. Additionally, discussions and summaries are provided on the current applications, challenges, and modification strategies associated with different techniques. Through a focused exploration of BG production techniques, with an emphasis on precise manipulation of BG formation using phage-encoded protein technologies, this study aims to furnish robust tools and methodologies for delving into the mechanisms underlying BG formation, as well as for the development of novel therapeutic strategies and applications based on BGs.

摘要

细菌体(BGs)被描述为保留其结构但缺乏细胞质内容物的细菌细胞包膜。BGs 的研究跨越了多个学科领域,开发 BG 生产技术以获得充足且稳定的 BG 样品对于探究 BG 的生物学特性、设计新型疾病治疗策略以及利用其工业应用具有重要意义。噬菌体(phage)基因组中编码的许多产物具有裂解细菌的能力,从而主要通过破坏细菌细胞壁完整性诱导 BG 形成。本综述全面调查了噬菌体编码蛋白在 BG 生产技术中的应用,包括噬菌体 E 蛋白介导的裂解、穿孔蛋白诱导的裂解以及 E 蛋白与 holin-endolysin 系统相结合的策略。此外,还对不同技术的当前应用、挑战和修饰策略进行了讨论和总结。通过集中探索 BG 生产技术,并强调使用噬菌体编码蛋白技术精确操纵 BG 形成,本研究旨在为深入探究 BG 形成机制以及基于 BGs 开发新型治疗策略和应用提供强大的工具和方法。

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