Guanosine diphosphate mannose: Difference between revisions
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Revision as of 18:52, 10 February 2025
Guanosine Diphosphate Mannose (GDP-Mannose) is a nucleotide sugar involved in glycosylation, which is the process of adding sugar moieties to proteins and lipids, playing a crucial role in various biological functions. GDP-Mannose is essential for the synthesis of glycoproteins, glycolipids, and the polysaccharide components of proteoglycans found in the extracellular matrix and cell surface.
Biosynthesis
GDP-Mannose is synthesized from GTP and Mannose-1-phosphate through the action of the enzyme GDP-mannose pyrophosphorylase. This reaction is critical in the N-linked glycosylation pathway, where GDP-Mannose serves as a mannose donor in the formation of the lipid-linked oligosaccharide precursor.
Function
The primary function of GDP-Mannose is to serve as a substrate for mannose incorporation into glycoconjugates. It is involved in the synthesis of complex polysaccharides, including those found in the cell walls of plants and the glycosylation of certain proteins in animals and humans. This glycosylation process is vital for protein folding, stability, and cell-cell recognition.
GDP-Mannose is also a precursor in the biosynthesis of Vitamin C in plants, highlighting its importance beyond the animal kingdom.
Pathway
The GDP-Mannose biosynthesis pathway is a part of the larger nucleotide sugar metabolism, which is crucial for the production of all glycoconjugates. The pathway's regulation is essential for maintaining the balance of glycosylation processes, affecting cell signaling, development, and immune responses.
Clinical Significance
Alterations in the GDP-Mannose levels or the enzymes involved in its metabolism have been linked to various diseases, including congenital disorders of glycosylation (CDG). These are a group of rare genetic disorders that affect the glycosylation pathway, leading to a wide range of clinical symptoms, from mild to severe, affecting multiple organ systems.
Research
Research into GDP-Mannose has focused on understanding its role in disease and development, as well as its potential therapeutic applications. For example, manipulating GDP-Mannose levels in certain cells has been explored as a strategy to influence immune responses or to correct glycosylation defects in diseases like CDG.
See Also

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