Markelova Natalia, Chumak Anastasia
Gause Institute of New Antibiotics, ul. Bolshaya Pirogovskaya, 11, Moscow 119021, Russia.
Int J Mol Sci. 2025 Jan 2;26(1):336. doi: 10.3390/ijms26010336.
cyclic lipopeptides (CLP), part of the three main families-surfactins, iturins, and fengycins-are secondary metabolites with a unique chemical structure that includes both peptide and lipid components. Being amphiphilic compounds, CLPs exhibit antimicrobial activity in vitro, damaging the membranes of microorganisms. However, the concentrations of CLPs used in vitro are difficult to achieve in natural conditions. Therefore, in a natural environment, alternative mechanisms of antimicrobial action by CLPs are more likely, such as inducing apoptosis in fungal cells, preventing microbial adhesion to the substrate, and promoting the death of phytopathogens by stimulating plant immune responses. In addition, CLPs in low concentrations act as signaling molecules of 's own metabolism, and when environmental conditions change, they form an adaptive response of the host bacterium. Namely, they trigger the differentiation of the bacterial population into various specialized cell types: competent cells, flagellated cells, matrix producers, and spores. In this review, we have summarized the current understanding of the antimicrobial action of CLPs under both experimental and natural conditions. We have also shown the relationship between some regulatory pathways involved in CLP biosynthesis and bacterial cell differentiation, as well as the role of CLPs as signaling molecules that determine changes in the physiological state of subpopulations in response to shifts in environmental conditions.
环脂肽(CLP)是三种主要家族——表面活性素、伊枯草菌素和丰原素的一部分,是具有独特化学结构的次生代谢产物,其结构包含肽和脂质成分。作为两亲性化合物,CLP在体外表现出抗菌活性,可破坏微生物的膜。然而,体外使用的CLP浓度在自然条件下难以达到。因此,在自然环境中,CLP更可能具有其他抗菌作用机制,例如诱导真菌细胞凋亡、防止微生物粘附于底物以及通过刺激植物免疫反应促进植物病原体死亡。此外,低浓度的CLP作为自身代谢的信号分子,当环境条件变化时,它们会形成宿主细菌的适应性反应。也就是说,它们触发细菌群体分化为各种特殊细胞类型:感受态细胞、有鞭毛细胞、基质产生细胞和孢子。在本综述中,我们总结了目前对CLP在实验条件和自然条件下抗菌作用的理解。我们还展示了CLP生物合成中涉及的一些调控途径与细菌细胞分化之间的关系,以及CLP作为信号分子在决定亚群生理状态变化以响应环境条件变化方面的作用。