Lehmann_2018_Angew.Chem.Int.Ed.Engl_57_348

Reference

Title : An Antibacterial beta-Lactone Kills Mycobacterium tuberculosis by Disrupting Mycolic Acid Biosynthesis - Lehmann_2018_Angew.Chem.Int.Ed.Engl_57_348
Author(s) : Lehmann J , Cheng TY , Aggarwal A , Park AS , Zeiler E , Raju RM , Akopian T , Kandror O , Sacchettini JC , Moody DB , Rubin EJ , Sieber SA
Ref : Angew Chem Int Ed Engl , 57 :348 , 2018
Abstract :

The spread of antibiotic resistance is a major challenge for the treatment of Mycobacterium tuberculosis infections. In addition, the efficacy of drugs is often limited by the restricted permeability of the mycomembrane. Frontline antibiotics inhibit mycomembrane biosynthesis, leading to rapid cell death. Inspired by this mechanism, we exploited beta-lactones as putative mycolic acid mimics to block serine hydrolases involved in their biosynthesis. Among a collection of beta-lactones, we found one hit with potent anti-mycobacterial and bactericidal activity. Chemical proteomics using an alkynylated probe identified Pks13 and Ag85 serine hydrolases as major targets. Validation through enzyme assays and customized (13) C metabolite profiling showed that both targets are functionally impaired by the beta-lactone. Co-administration with front-line antibiotics enhanced the potency against M. tuberculosis by more than 100-fold, thus demonstrating the therapeutic potential of targeting mycomembrane biosynthesis serine hydrolases.

PubMedSearch : Lehmann_2018_Angew.Chem.Int.Ed.Engl_57_348
PubMedID: 29067779

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Citations formats

Lehmann J, Cheng TY, Aggarwal A, Park AS, Zeiler E, Raju RM, Akopian T, Kandror O, Sacchettini JC, Moody DB, Rubin EJ, Sieber SA (2018)
An Antibacterial beta-Lactone Kills Mycobacterium tuberculosis by Disrupting Mycolic Acid Biosynthesis
Angew Chem Int Ed Engl 57 :348

Lehmann J, Cheng TY, Aggarwal A, Park AS, Zeiler E, Raju RM, Akopian T, Kandror O, Sacchettini JC, Moody DB, Rubin EJ, Sieber SA (2018)
Angew Chem Int Ed Engl 57 :348