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Neuronal Cytoskeleton Dynamics in 4R-Tauopathies

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mechanism1875 wordssynced 2026-04-02

Neuronal Cytoskeleton Dynamics in 4R-Tauopathies

Introduction

The neuronal cytoskeleton provides the structural foundation for axonal transport, synaptic function, and overall neuronal health. In 4R-tauopathies—including progressive supranuclear palsy (PSP), corticobasal degeneration (CBD), argyrophilic grain disease (AGD), globular glial tauopathy (GGT), and frontotemporal dementia with parkinsonism linked to chromosome 17 (FTDP-17)—pathological tau accumulation directly disrupts cytoskeletal integrity through multiple mechanisms[@dickson2007].

This page provides a comprehensive cross-disease comparison of cytoskeletal dynamics in 4R-tauopathies, focusing on microtubule stability, tubulin alterations, microtubule-associated protein (MAP) changes, and the downstream consequences for axonal transport. Understanding these shared mechanisms provides insight into therapeutic targets that may benefit multiple 4R-tauopathy disorders.

```mermaid
flowchart TD
subgraph Tau_Pathology ["4R Tau Pathology"]
A["4R Tau Accumulation"] --> B["Hyperphosphorylation"]
B --> C["Tau Misfolding and Aggregation"]
end

subgraph Cytoskeletal_Effects ["Cytoskeletal Effects"]
C --> D["Microtubule Destabilization"]
C --> E["Motor Protein Displacement"]
C --> F["Neurofilament Abnormalities"]
end

subgraph Transport_Consequences ["Transport Consequences"]
D --> G["Anterograde Transport Failure"]
D --> H["Retrograde Transport Failure"]
E --> G
E --> H
F --> I["Axonal Swellings"]
end

...
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