1. Academic Validation
  2. Postmodification of Daptomycin at Tryptophan Enables the Discovery of Aryl-Daptomycin Antibiofilm Activity against MRSA

Postmodification of Daptomycin at Tryptophan Enables the Discovery of Aryl-Daptomycin Antibiofilm Activity against MRSA

  • J Med Chem. 2026 Jun 11;69(11):13504-13527. doi: 10.1021/acs.jmedchem.6c00470.
Tiantian Yan 1 Jingyue Li 1 Yiping Li 1 Bingzi Ma 1 Ruoyan Jiao 1 Xinyu Cai 1 Xiaoyu Liu 2 Weili Yang 1 Wei Dai 1 Haiya Bai 1 3 Wenle Yang 1 Xiaokang Miao 1 Junpeng Ran 1 Guangjun Bao 1 Junqiu Xie 1 Wangsheng Sun 1 Rui Wang 1 4
Affiliations

Affiliations

  • 1 Key Laboratory of Preclinical Study for New Drugs of Gansu Province, School of Basic Medical Sciences & Research Unit of Peptide Science, Chinese Academy of Medical Sciences, 2019RU066, Lanzhou University, 199 Dong Gang West Road, Lanzhou 730000, Gansu, China.
  • 2 First Clinical Medical College, Gansu University of Chinese Medicine, Lanzhou 730000, China.
  • 3 Gansu Provincial Maternity and Child-Care Hospital (Gansu Provincial Central Hospital), Lanzhou 730000, China.
  • 4 State Key Laboratory of Bioactive Substance and Function of Natural Medicines, Institute of Materia Medica, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing 100050, China.
Abstract

Biofilm-related infections pose a growing global health threat and demand novel therapeutic agents. Although Daptomycin is effective against Gram-positive bacteria and biofilms, the emergence of resistant strains necessitates next-generation derivatives. Herein, a library of aryl-Daptomycin was successfully constructed by postmodification of Daptomycin at the tryptophan residue. The lead compound 1i exhibited improved Antibacterial activity, antibiofilm efficacy, and stability compared with Daptomycin, and also showed rapid killing of both planktonic and persister cells. In vivo studies, 1i significantly reduced drug-resistant Bacterial counts and biofilm burdens in mouse models of skin wound Infection and catheter-related biofilm Infection. Mechanistic studies revealed that it exerts Antibacterial activity by inducing membrane depolarization and disruption, while it inhibits biofilm formation by downregulating the ica gene and blocking the agr system. Moreover, molecular dynamics simulations confirmed the higher tetrameric stability of 1i compared with Daptomycin. Collectively, 1i represents a promising candidate for clinical treatment of Bacterial infections.

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