A substrate-multiplexed platform for profiling enzymatic potential of plant family 1 glycosyltransferases

S Sasilada Sirirungruang V Vincent Blay E Elys P. Rodriguez Y Yasmine F. Scott K Khanh M. Vuu C Collin R. Barnum P Paul H. Opgenorth F Fanzhou Kong Y Yuanyue Li O Oliver Fiehn P Patrick M. Shih

Abstract

Abstract Plants have expanded various biosynthetic enzyme families to produce a wide diversity of natural products; however, most enzymes encoded in plant genomes remain uncharacterized, highlighting the need for new functional genomic approaches. Here, we report a platform enabling the rapid functional characterization of plant family 1 glycosyltransferases, which serve important roles in plant development, defense, and communication. Using substrate-multiplexed reactions, mass spectrometry, and automated analysis, we screen 85 enzymes against a diverse library of 453 natural products, for a total of nearly 40,000 possible reactions. The resulting dataset reveals a widespread promiscuity and a strong preference for planar, hydroxylated aromatic substrates among family 1 glycosyltransferases. We also characterize glycosyltransferases with an unusually wide substrate scope and with a non-canonical Cys-Asp catalytic dyad. This work establishes a widely-applicable enzymatic screening pipeline, reflects the immense glycosylation capability of plants, and has implications in biocatalysis, metabolic engineering, and gene discovery.

Article Details

Volume / Issue Vol. 16, Issue 1
Published July 10, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (11)

S

Sasilada Sirirungruang

V

Vincent Blay

E

Elys P. Rodriguez

Y

Yasmine F. Scott

K

Khanh M. Vuu

C

Collin R. Barnum

P

Paul H. Opgenorth

F

Fanzhou Kong

Y

Yuanyue Li

O

Oliver Fiehn

P

Patrick M. Shih