Target intelligence / Profile preview

Glutamine--fructose-6-phosphate aminotransferase (isomerizing) (GFAT)

Target
GFAT
Molecular classification
Enzyme, Transferase, Aminotransferase, (Member of the glutamine-dependent amidotransferase family)
01

Overview

Glutamine--fructose-6-phosphate aminotransferase (isomerizing), commonly abbreviated as GFAT, is an enzyme that catalyzes the first and rate-limiting step of the hexosamine biosynthetic pathway, converting fructose-6-phosphate and glutamine to glucosamine-6-phosphate. This reaction is critical for the production of UDP-N-acetylglucosamine, a fundamental building block for glycoproteins, glycolipids, and chitin. GFAT has two major functional domains: an N-terminal glutaminase domain that hydrolyzes glutamine, and a C-terminal isomerase domain that facilitates sugar isomerization and aminotransfer. The enzyme plays a regulatory role in cellular glycosylation and is involved in metabolic pathways related to diabetes (insulin resistance), cancer, and chitin synthesis in fungi and arthropods. Due to its regulatory and biosynthetic importance, it is considered a therapeutic target, especially in the development of antifungal agents and possibly for metabolic diseases. Alterations in GFAT activity have implications in disease states such as diabetes and cancer.

Other names
Glucosamine-fructose-6-phosphate aminotransferase (isomerizing)Glucosamine-6-phosphate synthaseGlcN6P synthaseGFATGlmS
02

Mechanism of action

Inhibitors block conversion of fructose-6-phosphate and glutamine to glucosamine-6-phosphate, thereby inhibiting hexosamine pathway flux and downstream glycoconjugate biosynthesis.

03

Biological functions

Catalysis of the formation of glucosamine-6-phosphate from fructose-6-phosphate and glutamine (first, rate-limiting step in hexosamine biosynthetic pathway)Regulation of precursor availability for N- and O-linked glycosylationBiosynthesis of amino-sugar-containing macromolecules, including chitin in fungi and arthropodsMetabolic control point in the biosynthesis of UDP-N-acetylglucosamine, a key sugar nucleotideInsulin signaling/hexosamine-induced insulin resistance in diabetes
04

Disease associations

Diabetes/insulin resistanceCancer/metabolic reprogramming in neoplastic tissuesAnti-infective/antifungal targetOther (e.g., chitin-related disorders in insects/arthropods)
05

Safety considerations

No detailed safety concerns reported in the current search results.Potential risks may include disruption of essential glycosylation and cell wall/chitin synthesis in non-target organisms.
06

Interacting drugs

No FDA-approved drugs listed by name in the current search results. However, the enzyme is a proposed target for antifungal drugs (suggesting investigational or experimental inhibitors may exist).
07

Biomarkers

Altered enzyme activity or expression is associated with neoplastic tissues (potential biomarker in oncology research)Activity changes possibly monitored in diabetes; not specified as an established clinical biomarker

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