Target intelligence / Profile preview

Vanin-1 (VNN1)

Target
VNN1
Molecular classification
Enzyme (Pantetheinase, EC 3.5.1.-), GPI-anchored ectoenzyme, Member of the vanin family (VNN1, VNN2, VNN3)
01

Overview

Vanin-1 (VNN1) is a glycosylphosphatidylinositol (GPI)-anchored ectoenzyme highly expressed on the surface of cells in multiple organs, including liver, kidney, and intestine. Its main function is its pantetheinase activity—catalyzing the hydrolysis of pantetheine to cysteamine and pantothenic acid (vitamin B5), the latter being a precursor for coenzyme A synthesis. Vanin-1 is implicated in multiple biological processes, including lipid metabolism, energy production, response to oxidative stress, and modulation of inflammatory responses. It has roles in several diseases, such as metabolic disorders (diabetes, hepatic steatosis), inflammation, and kidney injury, making it a potential therapeutic target and biomarker. The enzyme is regulated by nuclear receptors such as PPAR-α and PPAR-γ, linking vanin-1 activity to metabolic and inflammatory signaling pathways. Recent studies have highlighted vanin-1's relevance as a drug target, with inhibitors in preclinical development as potential treatments for inflammatory and metabolic diseases

Other names
PantetheinaseVascular non-inflammatory molecule 1Pantetheine hydrolaseTiff66HDLCQ8Vanin 1pantetheinasevascular non-inflammatory molecule 1
02

Mechanism of action

Inhibitors block pantetheinase activity, reducing production of cysteamine and pantothenic acid, thereby altering oxidative stress, inflammation, and metabolic signaling

03

Biological functions

Catalysis of pantetheine hydrolysis (pantetheinase activity)Coenzyme A metabolism regulationLipid metabolism and energy productionRegulation of oxidative stressInflammatory modulationCell migration
04

Disease associations

Inflammation (pro- and anti-inflammatory roles)Metabolic disease (e.g., diabetes, hepatic steatosis, insulin resistance)Kidney diseasesLiver diseasesIntestinal diseases (including inflammatory bowel disease)
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Safety considerations

Possible impact on essential CoA/vitamin B5 metabolism (pantothenic acid biosynthesis)Potential effects on oxidative stress and inflammatory homeostasisStill under investigation; long-term inhibition may affect multiple physiological pathways
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Interacting drugs

Vanin-1 inhibitors (e.g., RR6; experimental, used in animal models)

1 more in the full profile.

07

Biomarkers

Urinary vanin-1 (kidney injury marker)Pantothenic acid (as a reflection of vanin-1 activity; emerging diabetes biomarker)

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