Gavalda_2014_Chem.Biol_21_1660

Reference

Title : The polyketide synthase Pks13 catalyzes a novel mechanism of lipid transfer in mycobacteria - Gavalda_2014_Chem.Biol_21_1660
Author(s) : Gavalda S , Bardou F , Laval F , Bon C , Malaga W , Chalut C , Guilhot C , Mourey L , Daffe M , Quemard A
Ref : Chemical Biology , 21 :1660 , 2014
Abstract :

Mycolate-containing compounds constitute major strategic elements of the protective coat surrounding the tubercle bacillus. We have previously shown that FAAL32-Pks13 polyketide synthase catalyzes the condensation reaction, which produces alpha-alkyl beta-ketoacids, direct precursors of mycolic acids. In contrast to the current biosynthesis model, we show here that Pks13 catalyzes itself the release of the neosynthesized products and demonstrate that this function is carried by its thioesterase-like domain. Most importantly, in agreement with the prediction of a trehalose-binding pocket in its catalytic site, this domain exhibits an acyltransferase activity and transfers Pks13's products onto an acceptor molecule, mainly trehalose, leading to the formation of the trehalose monomycolate precursor. Thus, this work allows elucidation of the hinge step of the mycolate-containing compound biosynthesis pathway. Above all, it highlights a unique mechanism of transfer of polyketide synthase products in mycobacteria, which is distinct from the conventional intervention of the discrete polyketide-associated protein (Pap)-type acyltransferases.

PubMedSearch : Gavalda_2014_Chem.Biol_21_1660
PubMedID: 25467124
Gene_locus related to this paper: myctu-PKS13

Related information

Gene_locus myctu-PKS13

Citations formats

Gavalda S, Bardou F, Laval F, Bon C, Malaga W, Chalut C, Guilhot C, Mourey L, Daffe M, Quemard A (2014)
The polyketide synthase Pks13 catalyzes a novel mechanism of lipid transfer in mycobacteria
Chemical Biology 21 :1660

Gavalda S, Bardou F, Laval F, Bon C, Malaga W, Chalut C, Guilhot C, Mourey L, Daffe M, Quemard A (2014)
Chemical Biology 21 :1660