抗菌肽
抗菌剂
内吞作用
无乳链球菌
马加宁
肽
细胞
细胞内
微生物学
生物化学
细菌
生物
遗传学
链球菌
作者
Jiawei Li,Lu Shang,Jing Lan,Shuli Chou,Xingjun Feng,Baoming Shi,Jiajun Wang,Yinfeng Lyu,Anshan Shan
标识
DOI:10.1021/acsami.0c12226
摘要
The significance of the complex bacterial ecosystem in the human body and the impediment of the mammalian membrane against many antibiotics together emphasize the necessity to develop antimicrobial agents with precise antimicrobial and cell-penetrating activities. A simple and feasible method for generating dual-function antimicrobial peptides inspired by highly hydrophobic peptide pheromone and cationic cell-penetrating peptides is presented. Furthermore, the extension of the peptide candidate library is achieved by modifying the charged domain. The bacteria-selective peptides L1, L2, L10, and L11 kill Streptococcus agalactiae by disrupting the membrane structure, and the targeted mechanism is suggested where the peptides offset the entrapment of S. agalactiae rather than of other bacteria. Moreover, L2 and L10 possess intracellular antibacterial activity and carrier property, which is mainly dependent on endocytosis. Given their suitable biocompatibility, high tolerance, no drug resistance, and effective antimicrobial capacity in a mouse mastitis model, L2 and L10 can be powerful weapons against S. agalactiae pathogen infection.
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