毒液
抗菌剂
抗菌肽
肽
抗生素
微生物学
生物
毒素
重新调整用途
免疫系统
药理学
免疫学
生物化学
生态学
作者
Osmar Nascimento Silva,Marcelo D. T. Torres,Jicong Cao,E.S.F. Alves,Letícia V. Rodrigues,Jarbas M. Resende,Luciano M. Lião,William F. Porto,Isabel C. M. Fensterseifer,Timothy K. Lu,Octávio Luiz Franco,César de la Fuente‐Núñez
标识
DOI:10.1073/pnas.2012379117
摘要
, into synthetic antimicrobials. We engineered within its N terminus a motif conserved among natural peptides with potent immunomodulatory and antimicrobial activities. The resulting peptide, mast-MO, adopted an α-helical structure as determined by NMR, exhibited increased antibacterial properties comparable to standard-of-care antibiotics both in vitro and in vivo, and potentiated the activity of different classes of antibiotics. Mechanism-of-action studies revealed that mast-MO targets bacteria by rapidly permeabilizing their outer membrane. In animal models, the peptide displayed direct antimicrobial activity, led to enhanced ability to attract leukocytes to the infection site, and was able to control inflammation. Permutation studies depleted the remaining toxicity of mast-MO toward human cells, yielding derivatives with antiinfective activity in animals. We demonstrate a rational design strategy for repurposing venoms into promising antimicrobials.
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