Enzymatic C4-Epimerization of UDP-Glucuronic Acid: Precisely Steered Rotation of a Transient 4-Keto Intermediate for an Inverted Reaction without Decarboxylation

Annika Jasmin Eveliina Borg, Oriol Esquivias, Joan Coines, Carme Rovira*, Bernd Nidetzky*

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

Abstract

UDP-glucuronic acid (UDP-GlcA) 4-epimerase illustrates an important problem regarding enzyme catalysis: balancing conformational flexibility with precise positioning. The enzyme coordinates the C4-oxidation of the substrate by NAD+ and rotation of a decarboxylation-prone β-keto acid intermediate in the active site, enabling stereoinverting reduction of the keto group by NADH. We reveal the elusive rotational landscape of the 4-keto intermediate. Distortion of the sugar ring into boat conformations induces torsional mobility in the enzyme's binding pocket. The rotational endpoints show that the 4-keto sugar has an undistorted 4C1 chair conformation. The equatorially placed carboxylate group disfavors decarboxylation of the 4-keto sugar. Epimerase variants lead to decarboxylation upon removal of the binding interactions with the carboxylate group in the opposite rotational isomer of the substrate. Substitutions R185A/D convert the epimerase into UDP-xylose synthases that decarboxylate UDP-GlcA in stereospecific, configuration-retaining reactions.
Original languageEnglish
Article numbere202211937
JournalAngewandte Chemie - International Edition
Volume62
Issue number4
DOIs
Publication statusPublished - 23 Jan 2023

Keywords

  • Carbohydrates
  • Enzyme Catalysis
  • Epimerase
  • QM/MM
  • UDP-Glucuronic Acid

ASJC Scopus subject areas

  • Chemistry(all)
  • Catalysis

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