化学
合理设计
抗菌剂
抗菌肽
毒性
生物化学
药理学
肽
组合化学
抗生素
结构-活动关系
作用机理
细菌
药代动力学
选择性
蛋白水解酶
微生物学
膜
药物设计
生物活性
药品
计算生物学
代谢稳定性
行动方式
作者
Shuyuan Jiang,Wenpeng Zhang,Long Tian,Chunlan Zeng,Jiaqi Han,Xia Wu,Yijie Xu,Longming Chen,Jiangmin Zeng,Chunhui Zhao,Lining Zhang,Liang Luan,Weifeng Ye,Changhao Zhang,Taoran Wang,Qingbin Meng
标识
DOI:10.1021/acs.jmedchem.5c01877
摘要
Antimicrobial peptides (AMPs), emerged as appealing therapeutic agents against multidrug-resistant (MDR) bacteria, face clinical obstacles due to unsatisfactory stability and mammalian toxicity. Rational design approaches capable of balancing the efficacy, stability, and safety of AMPs are greatly needed. Here, we engineered a series of derivatives of P-α-02-B─an AMP developed by our group─through site-specific modifications targeting leucine residues to improve proteolytic stability and reduce toxicity. Notably, the d-Ile substitution in the derivative H-10 synergistically enhanced proteolytic stability and attenuated toxicity. Further investigations revealed that H-10 exhibited rapid bactericidal action via membrane disruption. The bacterial selectivity of H-10 was revealed by molecular dynamics simulations. In vivo assessments confirmed its favorable safety profile and pharmacokinetic properties, as well as significant efficacy against Staphylococcus aureus (MDR) bacterial infections. Collectively, this study positions H-10 as a promising candidate against MDR infection while establishing leucine-centric design as a valuable paradigm in AMP optimization.
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