Drug-resistant bacterial infections have caused serious threats to human health and call for effective antibacterial agents that have low propensity to induce antimicrobial resistance. Host defense peptide-mimicking peptides are actively explored, among which poly-β-l-lysine displays potent antibacterial activity but high cytotoxicity due to the helical structure and strong membrane disruption effect. Here, we report an effective strategy to optimize antimicrobial peptides by switching membrane disrupting to membrane penetrating and intracellular targeting by breaking the helical structure using racemic residues. Introducing β-homo-glycine into poly-β-lysine effectively reduces the toxicity of resulting poly-β-peptides and affords the optimal poly-β-peptide, βLys(50)HG(50), which shows potent antibacterial activity against clinically isolated methicillin-resistant Staphylococcus aureus (MRSA) and MRSA persister cells, excellent biosafety, no antimicrobial resistance, and strong therapeutic potential in both local and systemic MRSA infections. The optimal poly-β-peptide demonstrates strong therapeutic potential and implies the success of our approach as a generalizable strategy in designing promising antibacterial polypeptides.
Switching from membrane disrupting to membrane crossing, an effective strategy in designing antibacterial polypeptide.
从破坏细胞膜转变为穿过细胞膜,是设计抗菌多肽的有效策略
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作者:Zhang Haodong, Chen Qi, Xie Jiayang, Cong Zihao, Cao Chuntao, Zhang Wenjing, Zhang Donghui, Chen Sheng, Gu Jiawei, Deng Shuai, Qiao Zhongqian, Zhang Xinyue, Li Maoquan, Lu Ziyi, Liu Runhui
| 期刊: | Science Advances | 影响因子: | 12.500 |
| 时间: | 2023 | 起止号: | 2023 Jan 25; 9(4):eabn0771 |
| doi: | 10.1126/sciadv.abn0771 | 研究方向: | 细胞生物学 |
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