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gsk3-parkinsons

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GSK3 Signaling in Parkinson's Disease

Overview

Glycogen synthase kinase-3 beta (GSK3β) is a serine/threonine kinase that plays a central role in the pathogenesis of Parkinson's disease (PD)[@kim2022]. As one of the most active kinases in the brain, GSK3β participates in multiple signaling cascades that regulate neuronal survival, protein aggregation, mitochondrial function, and inflammatory responses. Dysregulation of GSK3β activity contributes to the hallmark pathological features of PD, including dopaminergic neuron loss, alpha-synuclein aggregation, and neuroinflammation[@wang2014].

GSK3β is encoded by the GSK3B gene and is highly expressed in dopaminergic neurons of the substantia nigra pars compacta, making these neurons particularly vulnerable to GSK3β dysregulation. The kinase has been implicated in both familial and sporadic forms of PD, with interactions identified between GSK3β and several PD-related proteins including LRRK2, alpha-synuclein, PINK1, and parkin[@zhao2022].

This page provides a comprehensive analysis of GSK3β mechanisms in Parkinson's disease, focusing on tau phosphorylation, alpha-synuclein phosphorylation, mitochondrial dysfunction, and neuroinflammation. Understanding these pathways is essential for developing disease-modifying therapeutic strategies targeting GSK3β in PD.

GSK3β in Parkinson's Disease Pathogenesis

Overview of GSK3β Biology


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