Target intelligence / Profile preview

Glutamine--fructose-6-phosphate aminotransferase [isomerizing] 1 (GFPT1)

Target
GFPT1
Molecular classification
Enzyme, Transferase (specifically, aminotransferase)
01

Overview

Glutamine--fructose-6-phosphate aminotransferase [isomerizing] 1 (GFPT1) is an enzyme responsible for the first and rate-limiting step of the hexosamine biosynthetic pathway, catalyzing the conversion of fructose-6-phosphate and glutamine into glucosamine-6-phosphate. This pathway provides substrates for N- and O-glycosylation of proteins, thus regulating post-translational modification and cellular signaling. GFPT1 is expressed in most tissues, with predominance in muscle and limited expression in the brain. Alternative splicing generates isoforms with different activities; the muscle-specific GFPT1-L is important for neuromuscular junction stability and efficient glycolysis, but is less active than the ubiquitous GFPT1-S. Mutations in GFPT1 cause congenital myasthenic syndrome, manifesting as muscle weakness and neuromuscular dysfunction. GFPT1 is crucial for maintaining metabolic and glycoprotein homeostasis.

Other names
Glutamine--fructose-6-phosphate transaminase 1Glutamine:fructose-6-phosphate amidotransferase 1D-fructose-6-phosphate amidotransferase 1GFAT 1GFAT1Hexosephosphate aminotransferase 1GFPTCMSTA1GFAGFATGFPT1LGFAT1mMSLGGlucosamine--fructose-6-phosphate aminotransferase [isomerizing] 1
02

Mechanism of action

Drugs or compounds affecting GFPT1 would act by inhibiting or modifying the enzyme’s aminotransferase activity, thereby altering the flux through the hexosamine biosynthetic pathway, impacting protein glycosylation and metabolic regulation

03

Biological functions

Rate-limiting enzyme in the hexosamine biosynthetic pathwayAmino sugar and nucleotide sugar metabolismRegulation of N- and O-linked glycosylation of proteinsRegulation of glucose flux into the hexosamine pathwayRegulation of glycolytic energy productionControl of circadian expression of certain clock genesPost-translational protein modification (especially N-linked glycosylation)Cellular response to insulin stimulusInvolvement in neuromuscular junction formation and maintenance
04

Disease associations

Congenital myasthenic syndromeMuscle weakness/fatigue, neuromuscular junction dysfunctionPotential role in insulin resistance and glucose metabolism disordersOther metabolic disorders due to glycosylation defects
05

Safety considerations

Modulating GFPT1 activity could impact global protein glycosylation, causing broad metabolic effects and potentially triggering hypoglycemia, insulin resistance, or neuromuscular deficitsLoss-of-function mutations cause congenital myasthenic syndromes, indicating critical importance for neuromuscular transmission and muscle function
06

Interacting drugs

None directly named in the retrieved sources. Some metabolic pathway modulators (e.g., glucosamine) affect downstream products, but no approved drugs are specifically indicated to target GFPT1
07

Biomarkers

GFPT1 activity levels may serve as a marker for flux through the hexosamine pathway and potential glycosylation statusUDP-GlcNAc levelsUsed as a biomarker in research ELISA kits for metabolic or muscular diseases

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