Nucleotide-sugar metabolism in plants: the legacy of Luis F. Leloir

Author:

Figueroa Carlos M1ORCID,Lunn John E2ORCID,Iglesias Alberto A1ORCID

Affiliation:

1. Instituto de Agrobiotecnología del Litoral, UNL, CONICET, FBCB, Colectora Ruta Nacional 168 km 0, 3000 Santa Fe,Argentina

2. Max Planck Institute of Molecular Plant Physiology, Am Mühlenberg 1, D-14476 Potsdam-Golm, Germany

Abstract

Abstract This review commemorates the 50th anniversary of the Nobel Prize in Chemistry awarded to Luis F. Leloir ‘for his discovery of sugar-nucleotides and their role in the biosynthesis of carbohydrates’. He and his co-workers discovered that activated forms of simple sugars, such as UDP-glucose and UDP-galactose, are essential intermediates in the interconversion of sugars. They elucidated the biosynthetic pathways for sucrose and starch, which are the major end-products of photosynthesis, and for trehalose. Trehalose 6-phosphate, the intermediate of trehalose biosynthesis that they discovered, is now a molecule of great interest due to its function as a sugar signalling metabolite that regulates many aspects of plant metabolism and development. The work of the Leloir group also opened the doors to an understanding of the biosynthesis of cellulose and other structural cell wall polysaccharides (hemicelluloses and pectins), and ascorbic acid (vitamin C). Nucleotide-sugars also serve as sugar donors for a myriad of glycosyltransferases that conjugate sugars to other molecules, including lipids, phytohormones, secondary metabolites, and proteins, thereby modifying their biological activity. In this review, we highlight the diversity of nucleotide-sugars and their functions in plants, in recognition of Leloir’s rich and enduring legacy to plant science.

Funder

Agencia I+D+i

Max Planck Society

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Physiology

Reference173 articles.

1. BrUGE1 transgenic rice showed improved growth performance with enhanced drought tolerance;Abdula;Breeding Science,2016

2. A historical perspective on the regulation of cellulose biosynthesis;Allen;Carbohydrate Polymers,2021

3. Uber das Vorkommen von Trehalose in Selaginella lepidophylla;Anselmino;Berichte der Deutschen Pharmazeutischen Gesellschaft,1913

4. Allosteric regulation of the partitioning of glucose-1-phosphate between glycogen and trehalose biosynthesis in Mycobacterium tuberculosis;Asencion Diez;Biochimica et Biophysica Acta,2015

5. The production and utilization of GDP-glucose in the biosynthesis of trehalose 6-phosphate by Streptomyces venezuelae;Asencion Diez;Journal of Biological Chemistry,2017

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