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ArfGAP with GTPase domain, ankyrin repeat and PH domain-containing protein 2 (AGAP2)

Target
AGAP2
Molecular classification
Enzyme (specifically, GTPase-activating protein, Arf GAP family), Signal transduction adaptor/scaffolding protein, Other (multi-domain regulatory molecule; contains ankyrin repeat, PH domain, and GTPase domain)
01

Overview

ArfGAP with GTPase domain, ankyrin repeat and PH domain-containing protein 2 (AGAP2) is a multi-domain enzyme that functions as a GTPase-activating protein (GAP) primarily for the ADP-ribosylation factor (Arf) family of small GTPases, especially ARF1 and ARF5. It acts as a key regulator of intracellular trafficking, receptor recycling, and signal transduction by serving as a scaffold for protein complexes that promote endocytosis and recycling of receptors such as the β2-adrenergic receptor and the transferrin receptor. AGAP2 directly influences PI3K/Akt signaling, mediating anti-apoptotic responses, and has been shown to interact with molecules such as β-arrestins, Akt, and ERK, thereby linking membrane trafficking with key survival and mitogenic pathways. AGAP2 is overexpressed and/or amplified in multiple human cancers, where it acts as a proto-oncogene by supporting cell proliferation, invasion, and resistance to apoptosis. It is also associated with neurodevelopmental disorders, further highlighting its role in central signaling cascades.

Other names
CENTG1KIAA0167PIKEGGAP2Centaurin-gamma-1GTP-binding and GTPase-activating protein 2Phosphatidylinositol 3-kinase enhancerAGAP-2arf-GAP with GTPase, ANK repeat and PH domain-containing protein 2Arf GAP with GTP-binding protein-like, ANK repeat and PH domains 2centaurin, gamma 1phosphoinositide 3-kinase enhancer
02

Mechanism of action

no direct targeted therapeutics; hypothetical mechanisms would include inhibition of its GTPase-activating function or protein-protein interactions with signaling complexes

03

Biological functions

Signal transductionRegulation of endocytosis and receptor recycling (notably β2-adrenergic receptor and transferrin receptor)Regulation of PI3K/Akt signalingInhibition of apoptosis (anti-apoptotic)Regulation of ERK signalingCytoskeletal and focal adhesion remodeling
04

Disease associations

Cancer (oncogenic, promotes invasion, inhibits apoptosis, amplified/overexpressed in glioblastoma and other human cancers)Neurodevelopmental disorders (implicated in Fragile X syndrome, Autism spectrum disorder)
05

Safety considerations

Oncogenic risk—therapeutic inhibition could alter anti-apoptotic pathways and normal cell survivalPotential off-target effects on fundamental cellular signaling pathways (PI3K/Akt, ERK, vesicle trafficking)

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