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Antidiabetic profiling of veramycins, polyketides accessible by biosynthesis, chemical synthesis and precursor-directed modification

Authors :
Denis Dardić
Nils Böhringer
Alberto Plaza
Florian Zubeil
Juliane Pohl
Svenja Sommer
Leo Padva
Jonathan Becker
Maria A. Patras
Mona-Katharina Bill
Michael Kurz
Luigi Toti
Sven W. Görgens
Sören M. M. Schuler
André Billion
Oliver Schwengers
Paulus Wohlfart
Alexander Goesmann
Norbert Tennagels
Andreas Vilcinskas
Peter E. Hammann
Till F. Schäberle
Armin Bauer
Publica
Source :
Organic Chemistry Frontiers. 9:1604-1615
Publication Year :
2022
Publisher :
Royal Society of Chemistry (RSC), 2022.

Abstract

Seven new polyketides, termed veramycins, were isolated from a Streptomyces sp. from the Sanofi microbial strain collection along with their known congeners NFAT-133 and TM-123. Veramycin A, an α-pyrone congener of TM-123 and NFAT-133 showed an increased baseline deoxy-glucose uptake in the absence of insulin in a modified L6 rat skeletal muscle cell line (L6 GLUT4 AS160-like cells). In addition, both compounds slightly increased the sensitivity to insulin in this cell line. Total syntheses of NFAT-133, TM-123 and veramycin A were accomplished starting from a central building block, which bears the three contiguous stereogenic centers of this polyketide family. Our approach enables an efficient, selective and flexible access to all possible isomers of the stereotriad for further exploration of this series as a potential anti-diabetic lead structure as exemplified by the synthesis of an NFAT-133 epimer. Finally, the corresponding biosynthetic gene cluster (BGC) was identified by genome sequencing and gene inactivation. Based on feeding experiments, a biosynthetic pathway was proposed, which enabled access to new veramycin A analogs by precursor-directed biosynthesis.

Subjects

Subjects :
Organic Chemistry

Details

ISSN :
20524129
Volume :
9
Database :
OpenAIRE
Journal :
Organic Chemistry Frontiers
Accession number :
edsair.doi.dedup.....287b8bbcd53bdb43071ea4cd684ca690
Full Text :
https://doi.org/10.1039/d1qo01652k