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Polyamine Metabolism Pathway in Neurodegeneration

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mechanism1767 wordssynced 2026-04-02

Polyamine Metabolism Pathway in Neurodegeneration

Overview

The polyamine pathway is a critical metabolic system involved in cellular growth, stress response, and protein homeostasis. Polyamines—including putrescine, spermidine, and spermine—are small, positively charged molecules that play essential roles in neuronal function, synaptic plasticity, and neuroprotection. Dysregulation of polyamine metabolism has been implicated in [Alzheimer's disease](/diseases/alzheimers-disease), [Parkinson's disease](/diseases/parkinsons-disease), [Huntington's disease](/diseases/huntington-disease), and [amyotrophic lateral sclerosis](/diseases/amyotrophic-lateral-sclerosis), making it an emerging therapeutic target [1](https://pubmed.ncbi.nlm.nih.gov/34758326/).

Polyamines are unique among cellular metabolites due to their polycationic nature at physiological pH, allowing them to interact with negatively charged molecules including DNA, RNA, proteins, and phospholipids. This property underlies their diverse biological functions, from regulating gene expression to stabilizing protein structures. The dynamic balance between polyamine synthesis, catabolism, and transport determines their intracellular concentrations and functional outcomes.

```mermaid
flowchart TD
subgraph S["ynthesis"]
A["Ornithine"] -->|"ODC"| B["Putrescine"]
B -->|"SAT1"| C["Spermidine"]
C -->|"SMS"| D["Spermine"]
end

subgraph C["atabolism"]
D -->|"SMOX"| C
C -->|"PAOX"| B
B -->|"DAO"| E["Decomposition"]
end

...
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mechanisms-polyamine-metabolism-neurodegeneration
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