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环丙烷脂肪酸在细菌细胞膜特性和生理功能方面的研究现状

Current status of cyclopropane fatty acids on bacterial cell membranes characteristics and physiological functions.

作者信息

Geng Juan, Long Jinzhao, Hu Quanman, Liu Mengyue, Ge Anmin, Du Yazhe, Zhang Teng, Jin Yuefei, Yang Haiyan, Chen Shuaiyin, Duan Guangcai

机构信息

Department of Epidemiology and Health Statistics, College of Public Health, Zhengzhou University, Zhengzhou, China.

Department of Epidemiology and Health Statistics, College of Public Health, Zhengzhou University, Zhengzhou, China; Penglai Center for Disease Control and Prevention, Yantai, China.

出版信息

Microb Pathog. 2025 Mar;200:107295. doi: 10.1016/j.micpath.2025.107295. Epub 2025 Jan 11.

Abstract

Wide-ranging sophisticated physiological activities of cell membranes are associated with changes in fatty acid structure and composition. The cfa gene is a core regulator of cell membrane fatty acid cyclopropanation reaction. Its encoded cyclopropane fatty acid synthase (CFA synthase) catalyzes the binding of unsaturated fatty acid (UFA) to methylene groups, which undergoes cyclopropanation modification to produce cyclopropane fatty acids (CFAs). Compelling evidence suggests a large role for the cfa gene and CFAs in bacterial adaptive responses. This review provides an overview of the relationship of CFAs with bacterial cell membrane properties and physiological functions, including the roles of cell membrane fluidity, stability, and permeability to protons, bacterial growth, acid resistance, and especially in bacterial antibiotic resistance and pathogenicity. The dysregulation and inhibition of the cfa gene may serve as potential therapeutic targets against bacterial drug resistance and pathogenicity. Therefore, elucidating the biological function of CFAs during the stationary growth phase therefore provides invaluable insights into the bacterial pathogenesis and the development of novel antimicrobial agents.

摘要

细胞膜广泛而复杂的生理活动与脂肪酸结构和组成的变化相关。cfa基因是细胞膜脂肪酸环丙烷化反应的核心调节因子。其编码的环丙烷脂肪酸合酶(CFA合酶)催化不饱和脂肪酸(UFA)与亚甲基结合,使其发生环丙烷化修饰以产生环丙烷脂肪酸(CFA)。有力证据表明cfa基因和CFA在细菌适应性反应中发挥着重要作用。本综述概述了CFA与细菌细胞膜特性和生理功能的关系,包括细胞膜流动性、稳定性、对质子的通透性、细菌生长、耐酸性,尤其是在细菌抗生素耐药性和致病性方面的作用。cfa基因的失调和抑制可能成为对抗细菌耐药性和致病性的潜在治疗靶点。因此,阐明CFA在稳定生长期的生物学功能,可为深入了解细菌发病机制和开发新型抗菌药物提供宝贵见解。

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