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Updated: Apr 30, 2026

Nanomechanics of Drug-target Interactions and Antibacterial Resistance Detection
Published on: October 25, 2013
Bis-chlorination of a hexapeptide-PCP conjugate by the halogenase involved in vancomycin biosynthesis
Patrick C Schmartz1, Katja Zerbe, Khaled Abou-Hadeed
1Chemistry Department, University of Zurich, Winterthurerstrasse 190, 8057 Zurich, Switzerland. schmartz@oci.uzh.ch kabu@oci.uzh.ch khadeed@oci.uzh.ch robinson@oci.uzh.ch.
Abstract:
Vancomycin is an important nosocomial antibiotic containing a glycosylated, cross-linked and doubly chlorinated heptapeptide backbone. During the biosynthesis of the vancomycin aglycone, two β-hydroxytyrosine (Bht) residues are inserted at positions-2 and -6 into the heptapeptide backbone by a non-ribosomal peptide synthetase. A single flavin-dependent chlorinase (VhaA) is responsible for chlorinating both Bht residues at some ill-defined point in the assembly process. We show here using in vitro assays that VhaA is able to introduce a chlorine atom into each aromatic ring of both Bht residues at positions-2 and -6 of a peptide carrier protein-bound hexapeptide. The results suggest that VhaA can recognize and chlorinate two quite different sites within a linear hexapeptide intermediate during vancomycin biosynthesis.
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