Proteomic signature of fatty acid biosynthesis inhibition available for in vivo mechanism-of-action studies
Artikel i vetenskaplig tidskrift, 2011

atty acid biosynthesis is a promising novel antibiotic target. Two inhibitors of fatty acid biosynthesis, platencin and platensimycin, were recently discovered and their molecular targets identified. Numerous structure-activity relationship studies for both platencin and platensimycin are currently being undertaken. We established a proteomic signature for fatty acid biosynthesis inhibition in Bacillus subtilis using platencin, platensimycin, cerulenin, and triclosan. The induced proteins, FabHA, FabHB, FabF, FabI, PlsX, and PanB, are enzymes involved in fatty acid biosynthesis and thus linked directly to the target pathway. The proteomic signature can now be used to assess the in vivo mechanisms of action of compounds derived from structure-activity relationship programs, as demonstrated for the platensimycin-inspired chromium bioorganometallic PM47. It will further serve as a reference signature for structurally novel natural and synthetic antimicrobial compounds with unknown mechanisms of action. In summary, we described a proteomic signature in B. subtilis consisting of six upregulated proteins that is diagnostic of fatty acid biosynthesis inhibition and thus can be applied to advance antibacterial drug discovery programs.

Författare

Michaela Wenzel

Ruhr-Universität Bochum

Malay Patra

Ruhr-Universität Bochum

Dirk Albrecht

Universität Greifswald

David Y.-K. Chen

Agency for Science, Technology and Research (A*STAR)

Kyriakos C Nicolaou

Scripps Research Institute

Nils Metzler-Nolte

Ruhr-Universität Bochum

Julia E. Bandow

Ruhr-Universität Bochum

Antimicrobial Agents and Chemotherapy

0066-4804 (ISSN) 1098-6596 (eISSN)

Vol. 55 6 2590-2596

Ämneskategorier (SSIF 2025)

Molekylärbiologi

Mikrobiologi

Oorganisk kemi

Farmaceutiska vetenskaper

Organisk kemi

Läkemedelskemi

Medicinsk bioinformatik och systembiologi

DOI

10.1128/AAC.00078-11

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Senast uppdaterat

2026-03-23