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Cystobactamid 507: Concise synthesis, mode of action, and optimization toward more potent antibiotics

Walid A.M. Elgaher, Mostafa M. Hamed, Sascha Baumann, Jennifer Herrmann, Lorenz Siebenbürger, Jana Krull, Katarina Cirnski, Andreas Kirschning, Mark Brönstrup, Rolf Müller, Rolf W. Hartmann*

*Corresponding author for this work

Research output: Contribution to journalArticleResearchpeer review

Abstract

Lack of new antibiotics and increasing antimicrobial resistance are among the main concerns of healthcare communities nowadays, and these concerns necessitate the search for novel antibacterial agents. Recently, we discovered the cystobactamids—a novel natural class of antibiotics with broad-spectrum antibacterial activity. In this work, we describe 1) a concise total synthesis of cystobactamid 507, 2) the identification of the bioactive conformation using noncovalently bonded rigid analogues, and 3) the first structure–activity relationship (SAR) study for cystobactamid 507 leading to new analogues with high metabolic stability, superior topoisomerase IIA inhibition, antibacterial activity and, importantly, stability toward the resistant factor AlbD. Deeper insight into the mode of action revealed that the cystobactamids employ DNA minor-groove binding as part of the drug–target interaction without showing significant intercalation. By designing a new analogue of cystobactamid 919-2, we finally demonstrated that these findings could be further exploited to obtain more potent hexapeptides against Gram-negative bacteria.

Original languageEnglish
Pages (from-to)7219-7225
Number of pages7
JournalChemistry - A European Journal
Volume26
Issue number32
DOIs
Publication statusPublished - 26 Jan 2020

Keywords

  • antibiotics
  • conformation analysis
  • drug design
  • hydrogen bonds
  • total synthesis

ASJC Scopus subject areas

  • Catalysis
  • Organic Chemistry

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