Enzymatic ester bond formation strategies in fungal macrolide skeletons.

Nat Prod Rep

College of Pharmaceutical Sciences, Southwest University, 400715 Chongqing, China.

Published: January 2025

Covering: up to August 2024Macrolides, the core skeletons of numerous marketed drugs and bioactive natural products, have garnered considerable scientific interest owing to their structural diversity and broad spectrum of pharmaceutical activities. The formation of intramolecular ester bonds is a critical biocatalytic step in constructing macrolide skeletons. Here, we summarised enzymatic ester bond formation strategies in fungal polyketide (PK)-type, nonribosomal peptide (NRP)-type, and PK-NRP hybrid-type macrolides. In PK-type macrolides, ester bond formation is commonly catalysed by a -acting thioesterase (TE) or a -acting TE domain during the product release process. In NRP-type and PK-NRP hybrid-type macrolides, the ester bond is usually introduced through condensation (C) domain-catalysed esterification during the elongation or product release step. Although the TE and C domains share similarities in their catalytic mechanism, using hydroxyl groups as nucleophiles in an intramolecular nucleophilic attack, they differ in terms of the hydroxyl origin, the timing of ester bond formation, and domain location. Furthermore, some TE domains are utilized as chemoenzymatic catalysts to construct macrolides with different ring sizes. A comparison of ester bond formation between fungi and bacteria is also discussed. Exploring the biosynthetic pathways of fungal macrolides, elucidating the diverse strategies employed in the formation of ester bonds, and understanding the application of enzymes/domains in chemoenzymatic synthesis hold promise for the discovery of new bioactive macrolides in the future.

Download full-text PDF

Source
http://dx.doi.org/10.1039/d4np00050aDOI Listing

Publication Analysis

Top Keywords

ester bond
24
bond formation
20
enzymatic ester
8
formation strategies
8
strategies fungal
8
macrolide skeletons
8
ester bonds
8
nrp-type pk-nrp
8
pk-nrp hybrid-type
8
hybrid-type macrolides
8

Similar Publications

Enzymatic ester bond formation strategies in fungal macrolide skeletons.

Nat Prod Rep

January 2025

College of Pharmaceutical Sciences, Southwest University, 400715 Chongqing, China.

Covering: up to August 2024Macrolides, the core skeletons of numerous marketed drugs and bioactive natural products, have garnered considerable scientific interest owing to their structural diversity and broad spectrum of pharmaceutical activities. The formation of intramolecular ester bonds is a critical biocatalytic step in constructing macrolide skeletons. Here, we summarised enzymatic ester bond formation strategies in fungal polyketide (PK)-type, nonribosomal peptide (NRP)-type, and PK-NRP hybrid-type macrolides.

View Article and Find Full Text PDF

Visible-Light-Induced Synthesis of Esters via a Self-Propagating Radical Reaction.

J Org Chem

January 2025

College of Chemistry, Chemical Engineering and Materials Science, Soochow University, Suzhou 215123, People's Republic of China.

We herein disclose a visible-light-induced synthesis of aryl esters through the cross-dehydrogenative coupling of aldehydes with phenols using BrCCl, in which phenolate functions as both a substrate and a photosensitizer. This transition-metal- and photocatalyst-free visible-light-induced esterification is suitable for a wide range of substrates and gives moderate to excellent yields (up to 95%). Mechanistic studies provided evidence of a self-propagating radical reaction involving homolytic cleavage of the aldehydic C-H bond and the formation of acyl bromides.

View Article and Find Full Text PDF

Chemodivergent dearomatization of benzene-linked O-oxime esters EnT-induced radical cross-coupling.

Chem Sci

January 2025

Key Laboratory of Functional Molecular Engineering of Guangdong Province, School of Chemistry and Chemical Engineering, South China University of Technology (SCUT) Guangzhou 510640 China.

Radical-mediated dearomatization strategies offer a blueprint for building value-added and synthetically valuable three-dimensional skeletons from readily available aromatic starting materials. Herein, we report a novel strategy by leveraging benzene-linked O-oxime esters as triply functionalized precursors to form two distinct persistent radicals under a chemodivergent pathway. These radicals then couple with a cyclohexadienyl radical for either carboamination or carbo-aminoalkylation.

View Article and Find Full Text PDF

Synergistic Boronic Acid and Photoredox Catalysis: Synthesis of C-Branched Saccharides via Selective Alkylation of Unprotected Saccharides.

Org Lett

January 2025

Department of Chemistry and School of Pharmacy, China State Key Laboratory of Applied Organic Chemistry, Lanzhou University, Lanzhou 730000, P. R. China.

Here we present a regio- and stereoselective alkylation approach for unprotected saccharides using synergistic boronic acid and photoredox catalysis. Targeting the equatorial C-H bond of the -1,2-diol motif, this method employs MeB(OH) as a catalyst. Mechanistic investigations indicate that the formation of a tetracoordinate boron species, resulting from the interaction between the cyclic boronic diol ester and a free hydroxyl group in the saccharide, is critical to this transformation.

View Article and Find Full Text PDF

Elucidating on the Quaternary Structure of Viper Venom Phospholipase A Enzymes in Aqueous Solution.

Biochimie

January 2025

LAQV, REQUIMTE, Departamento de Química e Bioquímica, Faculdade de Ciências, Universidade do Porto, Rua do Campo Alegre s/n, 4169-007 Porto, Portugal. Electronic address:

This study focuses on the quaternary structure of the viper-secreted phospholipase A (PLA), a central toxin in viper envenomation. PLA enzymes catalyse the hydrolysis of the sn-2 ester bond of membrane phospholipids. Small-molecule inhibitors that act as snakebite antidotes, such as varespladib, are currently in clinical trials.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!