Title : Thioesterase-Catalyzed Aminoacylation and Thiolation of Polyketides in Fungi - Tang_2019_J.Am.Chem.Soc_141_8198 |
Author(s) : Tang MC , Fischer CR , Chari JV , Tan D , Suresh S , Chu A , Miranda M , Smith J , Zhang Z , Garg NK , St Onge RP , Tang Y |
Ref : Journal of the American Chemical Society , 141 :8198 , 2019 |
Abstract :
Fungal highly reducing polyketide synthases (HRPKSs) biosynthesize polyketides using a single set of domains iteratively. Product release is a critical step in HRPKS function to ensure timely termination and enzyme turnover. Nearly all of the HRPKSs characterized to date employ a separate thioesterase (TE) or acyltransferase enzyme for product release. In this study, we characterized two fungal HRPKSs that have fused C-terminal TE domains, a new domain architecture for fungal HRPKSs. We showed that both HRPKS-TEs synthesize aminoacylated polyketides in an ATP-independent fashion. The KU42 TE domain selects cysteine and homocysteine and catalyzes transthioesterification using the side-chain thiol group as the nucleophile. In contrast, the KU43 TE domain selects leucine methyl ester and performs a direct amidation of the polyketide, a reaction typically catalyzed by nonribosomal peptide synthetase (NRPS) domains. The characterization of these HRPKS-TE enzymes showcases the functional diversity of HRPKS enzymes and provides potential TE domains as biocatalytic tools to diversify HRPKS structures. |
PubMedSearch : Tang_2019_J.Am.Chem.Soc_141_8198 |
PubMedID: 31051070 |
Gene_locus related to this paper: punst-KU42 |
Gene_locus | punst-KU42 |
Tang MC, Fischer CR, Chari JV, Tan D, Suresh S, Chu A, Miranda M, Smith J, Zhang Z, Garg NK, St Onge RP, Tang Y (2019)
Thioesterase-Catalyzed Aminoacylation and Thiolation of Polyketides in Fungi
Journal of the American Chemical Society
141 :8198
Tang MC, Fischer CR, Chari JV, Tan D, Suresh S, Chu A, Miranda M, Smith J, Zhang Z, Garg NK, St Onge RP, Tang Y (2019)
Journal of the American Chemical Society
141 :8198