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GADD45G as Pathological Sensor: Orchestrating Reactive Gliosis in Neurodegeneration

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mechanism2512 wordssynced 2026-04-02

GADD45G as Pathological Sensor: Orchestrating Reactive Gliosis in Neurodegeneration

Overview

[GADD45G](/genes/gadd45g) (Growth Arrest and DNA Damage Inducible Gamma) operates as a pathological sensor that orchestrates reactive gliosis — the coordinated activation of microglia and astrocytes in response to CNS injury and neurodegeneration. The key study establishing this framework (PMID:40409253) demonstrates that GADD45G is critically required for glial cell activation and the ensuing neuroinflammatory cascade that drives progressive neuronal loss in Alzheimer's disease and Parkinson's disease models.[@shen2025]

Unlike its well-characterized roles in cell cycle arrest and DNA repair, GADD45G's function as a glial pathology sensor reveals a distinct mechanistic axis that bridges environmental stress signals to the activation of pro-inflammatory transcriptional programs. This positions GADD45G as a central integrator of neurotoxic insults — from amyloid-beta oligomers and alpha-synuclein aggregates to oxidative stress and mitochondrial dysfunction — into the reactive gliosis response that defines the neuroinflammatory microenvironment of neurodegenerative disease.[@shen2025]

The GADD45 Family: Comparative Overview

The GADD45 family comprises three highly conserved, small acidic proteins that share overlapping functions in stress sensing and DNA repair, yet exhibit distinct expression patterns and functional specializations in the nervous system.

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