抗菌肽
抗菌剂
先天免疫系统
生物
微生物学
细胞内
体内
类胡萝卜素
细胞内寄生虫
免疫系统
生物膜
细菌
细胞生物学
免疫学
遗传学
作者
Zifan Ye,Lei Fu,Shuangyu Li,Ziying Chen,Jianhong Ouyang,Xinci Shang,Yanli Liu,Lianghui Gao,Yipeng Wang
标识
DOI:10.1038/s41467-024-51730-x
摘要
Non-direct antimicrobial cationic peptides (NDACPs) are components of the animal innate immune system. But their functions and association with antimicrobial peptides (AMPs) are incompletely understood. Here, we reveal a synergistic interaction between the AMP AW1 and the NDACP AW2, which are co-expressed in the frog Amolops wuyiensis. AW2 enhances the antibacterial activity of AW1 both in vitro and in vivo, while mitigating the development of bacterial resistance and eradicating biofilms. AW1 and AW2 synergistically damage bacterial membranes, facilitating cellular uptake and interaction of AW2 with the intracellular target bacterial genomic DNA. Simultaneously, they trigger the generation of ROS in bacteria, contributing to cell death upon reaching a threshold level. Moreover, we demonstrate that this synergistic antibacterial effect between AMPs and NDACPs is prevalent across diverse animal species. These findings unveil a robust and previously unknown correlation between AMPs and NDACPs as a widespread antibacterial immune defense strategy in animals. Antimicrobial peptides and non-direct antimicrobial cationic peptides are secreted in response to invasive pathogens. Here, Ye et al show that there is a synergistic interaction between these two types of expressed peptides from the amphibian frog Amolops wuyiensis.
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