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Structure, mechanism, and evolution of the last step in vitamin C biosynthesis

Academic Article
Publication Date:
2024
abstract:
Photosynthetic organisms, fungi, and animals comprise distinct pathways for vitamin C biosynthesis. Besides this diversity, the final biosynthetic step consistently involves an oxidation reaction carried out by the aldonolactone oxidoreductases. Here, we study the origin and evolution of the diversified activities and substrate preferences featured by these flavoenzymes using molecular phylogeny, kinetics, mutagenesis, and crystallographic experiments. We find clear evidence that they share a common ancestor. A flavin-interacting amino acid modulates the reactivity with the electron acceptors, including oxygen, and determines whether an enzyme functions as an oxidase or a dehydrogenase. We show that a few side chains in the catalytic cavity impart the reaction stereoselectivity. Ancestral sequence reconstruction outlines how these critical positions were affixed to specific amino acids along the evolution of the major eukaryotic clades. During Eukarya evolution, the aldonolactone oxidoreductases adapted to the varying metabolic demands while retaining their overarching vitamin C-generating function.
Iris type:
1.1 Articolo in rivista
Keywords:
Vitamin C, enzyme evolution, oxygen
List of contributors:
Boverio, A.; Jamil, N.; Mannucci, B.; Mascotti, M. L.; Fraaije, M. W.; Mattevi, A.
Authors of the University:
FRAAIJE MARCO WILHELMUS
MANNUCCI BARBARA
MATTEVI ANDREA
Handle:
https://iris.unipv.it/handle/11571/1505616
Full Text:
https://iris.unipv.it//retrieve/handle/11571/1505616/612941/s41467-024-48410-1.pdf
Published in:
NATURE COMMUNICATIONS
Journal
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URL

https://www.nature.com/articles/s41467-024-48410-1#peer-review
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