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Protein Homeostasis Therapies

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therapeutics1041 wordssynced 2026-04-02

Introduction

Protein Homeostasis Therapies is an important component in the neurobiology of neurodegenerative diseases. This page provides detailed information about its structure, function, and role in disease processes.

Overview

flowchart TD Protein_Homeostasis_Therapies["Protein Homeostasis Therapies"] -->|"references"| HTT["HTT"] Protein_Homeostasis_Therapies["Protein Homeostasis Therapies"] -->|"references"| BACE1["BACE1"] Protein_Homeostasis_Therapies["Protein Homeostasis Therapies"] -->|"references"| TFEB["TFEB"] style Protein_Homeostasis_Therapies fill:#4fc3f7,stroke:#333,color:#000

Protein homeostasis (proteostasis) is essential for neuronal health. Neurodegenerative diseases are characterized by accumulation of misfolded proteins—[amyloid-beta](/proteins/amyloid-beta) and [tau](/proteins/tau) in Alzheimer's disease, [alpha-synuclein](/mechanisms/alpha-synuclein) in Parkinson's disease, mutant [huntingtin](/proteins/huntingtin-protein) in Huntington's disease, and [TDP-43](/proteins/tdp-43) in ALS. Therapies targeting the proteostasis network aim to restore proper protein folding, clearance, and turnover.

The proteostasis network comprises molecular chaperones, the [ubiquitin-proteasome system](/cell-types/ubiquitin-proteasome-system) (UPS), and the autophagy-lysosomal pathway (ALP). These interconnected systems work together to maintain cellular protein quality control, and their dysfunction is a hallmark of neurodegenerative diseases["@butler2022"].

Proteostasis Network

The Three Pillars


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