Warrier_2012_Antimicrob.Agents.Chemother_56_1735

Reference

Title : Antigen 85C inhibition restricts Mycobacterium tuberculosis growth through disruption of cord factor biosynthesis - Warrier_2012_Antimicrob.Agents.Chemother_56_1735
Author(s) : Warrier T , Tropis M , Werngren J , Diehl A , Gengenbacher M , Schlegel B , Schade M , Oschkinat H , Daffe M , Hoffner S , Eddine AN , Kaufmann SH
Ref : Antimicrobial Agents & Chemotherapy , 56 :1735 , 2012
Abstract :

The antigen 85 (Ag85) protein family, consisting of Ag85A, -B, and -C, is vital for Mycobacterium tuberculosis due to its role in cell envelope biogenesis. The mycoloyl transferase activity of these proteins generates trehalose dimycolate (TDM), an envelope lipid essential for M. tuberculosis virulence, and cell wall arabinogalactan-linked mycolic acids. Inhibition of these enzymes through substrate analogs hinders growth of mycobacteria, but a link to mycolic acid synthesis has not been established. In this study, we characterized a novel inhibitor of Ag85C, 2-amino-6-propyl-4,5,6,7-tetrahydro-1-benzothiophene-3-carbonitrile (I3-AG85). I3-AG85 was isolated from a panel of four inhibitors that exhibited structure- and dose-dependent inhibition of M. tuberculosis division in broth culture. I3-AG85 also inhibited M. tuberculosis survival in infected primary macrophages. Importantly, it displayed an identical MIC against the drug-susceptible H37Rv reference strain and a panel of extensively drug-resistant/multidrug-resistant M. tuberculosis strains. Nuclear magnetic resonance analysis indicated binding of I3-AG85 to Ag85C, similar to its binding to the artificial substrate octylthioglucoside. Quantification of mycolic acid-linked lipids of the M. tuberculosis envelope showed a specific blockade of TDM synthesis. This was accompanied by accumulation of trehalose monomycolate, while the overall mycolic acid abundance remained unchanged. Inhibition of Ag85C activity also disrupted the integrity of the M. tuberculosis envelope. I3-AG85 inhibited the division of and reduced TDM synthesis in an M. tuberculosis strain deficient in Ag85C. Our results indicate that Ag85 proteins are promising targets for novel antimycobacterial drug design.

PubMedSearch : Warrier_2012_Antimicrob.Agents.Chemother_56_1735
PubMedID: 22290959

Related information

Inhibitor I3-AG85
Substrate Octylthioglucoside

Citations formats

Warrier T, Tropis M, Werngren J, Diehl A, Gengenbacher M, Schlegel B, Schade M, Oschkinat H, Daffe M, Hoffner S, Eddine AN, Kaufmann SH (2012)
Antigen 85C inhibition restricts Mycobacterium tuberculosis growth through disruption of cord factor biosynthesis
Antimicrobial Agents & Chemotherapy 56 :1735

Warrier T, Tropis M, Werngren J, Diehl A, Gengenbacher M, Schlegel B, Schade M, Oschkinat H, Daffe M, Hoffner S, Eddine AN, Kaufmann SH (2012)
Antimicrobial Agents & Chemotherapy 56 :1735