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Updated: Jul 28, 2025

Characterizing Histone Post-translational Modification Alterations in Yeast Neurodegenerative Proteinopathy Models
Published on: March 24, 2019
Activation of Pgk1 Results in Reduced Protein Aggregation in Diverse Neurodegenerative Conditions
Hao Chen1, Yajie Li1, Jingwen Gao1
1Department of Biochemistry and Molecular Biology School of Basic Medicine, Capital Medical University, Youanmen, Beijing, 100069, China.
Abstract:
The prevention of protein condensates has emerged as a new drug target to treat diverse neurodegenerative disorders. We previously reported that terazosin (TZ), a prescribed antagonist of the α1 adrenergic receptor, is an activator of phosphoglycerate kinase 1 (Pgk1) and Hsp90. In this study, we aimed to determine whether TZ prevents the formation of diverse pathological condensates in cell cultures and animal disease models. In primary neuron culture, TZ treatment reduced both the protein density and abundance of fused in sarcoma (FUS)-P525L-GFP, a disease-associated mutant form of FUS. Regarding the mechanism, we found that increased intracellular ATP levels were critical for the reduction in protein aggregate density. In addition, Hsp90 activation by TZ enhanced Hsp90 interaction with ULK1, a master regulator of autophagy. Through in vivo studies, we examined neuron-specific overexpression of tau in Drosophila, mouse models of APP/PS1 Alzheimer's disease (AD), and a rat model of multiple system atrophy (MSA) via the viral expression of α-synuclein in the striatum. TZ prevented and reversed the formation of pathological protein condensates. Together, our results suggest that activation of Pgk1 in cytosol may dissolve pathological protein aggregates via increased ATP levels and degrade these proteins via autophagy; the FUS-P525L degradation pathway in nucleus is unclear.
Insights
Terazosin (TZ) prevents pathological protein condensates in neurodegenerative disease models by activating phosphoglycerate kinase 1 (Pgk1) and Hsp90. This drug candidate increases ATP levels and promotes autophagy, offering a potential therapeutic strategy.
Area of Science:
- Neuroscience
- Molecular Biology
- Pharmacology
Background:
- Protein condensates are implicated in neurodegenerative diseases.
- Terazosin (TZ), an α1 adrenergic receptor antagonist, activates phosphoglycerate kinase 1 (Pgk1) and Hsp90.
- Previous work identified TZ's interaction with Pgk1 and Hsp90.
Purpose of the Study:
- To investigate TZ's efficacy in preventing diverse pathological protein condensate formation.
- To elucidate the molecular mechanisms underlying TZ's effects.
Main Methods:
- Primary neuron cultures treated with TZ.
- Cellular assays for Fused in Sarcoma (FUS)-P525L-GFP.
- In vivo studies using Drosophila, APP/PS1 Alzheimer's disease mouse models, and α-synuclein rat models.
Main Results:
- TZ reduced FUS-P525L-GFP density and abundance in neurons.
- Increased intracellular ATP levels were crucial for aggregate reduction.
- TZ enhanced Hsp90 interaction with ULK1, a key autophagy regulator.
- TZ prevented and reversed pathological protein condensates in vivo.
Conclusions:
- TZ shows potential for treating neurodegenerative disorders by targeting protein condensates.
- Pgk1 activation by TZ may dissolve aggregates via ATP increase and promote degradation via autophagy.
- Further research is needed to clarify the nuclear FUS-P525L degradation pathway.
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