Target intelligence / Profile preview

Asparagine synthetase (glutamine-hydrolyzing) (ASNS)

Target
ASNS
Molecular classification
Enzyme, Ligase, Class II glutamine amidotransferase (GATase)
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Overview

Asparagine synthetase (glutamine-hydrolyzing), abbreviated ASNS, is an enzyme that catalyzes the ATP-dependent conversion of aspartate and glutamine to asparagine and glutamate, playing a central role in amino acid metabolism. ASNS is essential for supplying asparagine for cellular needs, especially for protein biosynthesis and N-linked glycosylation. The reaction occurs via two domains: the N-terminal domain hydrolyzes glutamine to produce ammonia, which is then channeled to the C-terminal synthetase domain for the formation of asparagine from aspartate. In humans, ASNS is the sole source of asparagine synthesis in the brain due to the inability of asparagine to cross the blood-brain barrier. Clinical significance includes ASNS deficiency, resulting in severe neurodevelopmental disorders, and its role as a cancer target, as many tumor cells depend on asparagine to proliferate and survive. Pharmacologically, ASNS is targeted indirectly by L-asparaginase in leukemia and by direct inhibitors in preclinical cancer therapy development. ASNS expression also serves as a biomarker for therapy selection and resistance.

Other names
Asparagine synthetase BGlutamine-dependent asparagine synthetaseASAS-BL-aspartate:L-glutamine amido-ligase (AMP-forming)
02

Mechanism of action

Competitive inhibition of the ASNS enzyme active site (for ASNS inhibitors). Depletion of asparagine levels (by L-asparaginase, exploits tumor reliance on asparagine synthesis).

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Biological functions

Amino acid biosynthesis (asparagine synthesis)Nitrogen metabolismProtein modification (provides asparagine for N-linked glycosylation)Maintains amino acid balance in cellsCellular response to nutrient deprivation
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Disease associations

Cancer (notably acute lymphoblastic leukemia, colorectal and breast cancer—supports tumor survival and metastasis)Neurologic disease (asparagine synthetase deficiency causing severe neurodevelopmental disorder)
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Safety considerations

Potential neurotoxicity (the brain relies solely on ASNS for asparagine production, as asparagine cannot cross the blood-brain barrier)Systemic asparagine depletion can lead to side effects such as neurotoxicity and immunosuppressionResistance can develop in tumors by upregulation of ASNS
06

Interacting drugs

L-asparaginase (indirectly, by depleting asparagine in leukemia)

2 more in the full profile.

07

Biomarkers

ASNS expression level (used to predict L-asparaginase sensitivity/resistance, especially in acute lymphoblastic leukemia)

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