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Updated: Aug 5, 2026

Nanomechanics of Drug-target Interactions and Antibacterial Resistance Detection
Published on: October 25, 2013
Fragmentation of Vancoresmycin Reveals a Strong Dependence on Global Molecular Architecture for Antibacterial
Max Schönenbroicher1, Florian Heppner1, Maximilian Seul1
1Kekulé-Institute for Organic Chemistry and Biochemistry, University of Bonn, Bonn, Germany.
Abstract:
Vancoresmycin is a structurally complex tetramic-acid-containing natural product with potent activity against Gram-positive bacteria, yet its structure-activity relationships remain poorly defined. In particular, it is unclear whether discrete substructures contribute independently to antibacterial activity or whether biological function depends on the integrity of the full molecular framework. Here, we report the synthesis and biological evaluation of a series of structurally defined fragments derived from vancoresmycin and its aglycon amycomycin, including the tetramic acid core, eastern and western polyketide segments, and the mycosamine residue. Despite preserving key structural motifs, the fragments did not exhibit considerable antibacterial activity. Only the western fragment displayed weak activity accompanied by indications of membrane-associated stress. These results demonstrate that antibacterial activity in vancoresmycin cannot be attributed to isolated substructures but instead depends on the integrated molecular architecture. These results provide a framework for future design strategies that preserve global structural properties rather than focusing on discrete motifs.
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