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In Vitro Aggregation Assays Using Hyperphosphorylated Tau Protein
Published on: January 2, 2015
Activity of the poly(A) binding protein MSUT2 determines susceptibility to pathological tau in the mammalian brain
Jeanna M Wheeler1, Pamela McMillan2, Timothy J Strovas1
1Geriatric Research Education and Clinical Center, Veterans Affairs Puget Sound Health Care System, Seattle, WA 98108, USA.
Abstract:
Brain lesions composed of pathological tau help to drive neurodegeneration in Alzheimer's disease (AD) and related tauopathies. Here, we identified the mammalian suppressor of tauopathy 2 (MSUT2) gene as a modifier of susceptibility to tau toxicity in two mouse models of tauopathy. Transgenic PS19 mice overexpressing tau, a model of AD, and lacking the Msut2 gene exhibited decreased learning and memory deficits, reduced neurodegeneration, and reduced accumulation of pathological tau compared to PS19 tau transgenic mice expressing Msut2 Conversely, Msut2 overexpression in 4RTauTg2652 tau transgenic mice increased pathological tau deposition and promoted the neuroinflammatory response to pathological tau. MSUT2 is a poly(A) RNA binding protein that antagonizes the canonical nuclear poly(A) binding protein PABPN1. In individuals with AD, MSUT2 abundance in postmortem brain tissue predicted an earlier age of disease onset. Postmortem AD brain tissue samples with normal amounts of MSUT2 showed elevated neuroinflammation associated with tau pathology. We observed co-depletion of MSUT2 and PABPN1 in postmortem brain samples from a subset of AD cases with higher tau burden and increased neuronal loss. This suggested that MSUT2 and PABPN1 may act together in a macromolecular complex bound to poly(A) RNA. Although MSUT2 and PABPN1 had opposing effects on both tau aggregation and poly(A) RNA tail length, we found that increased poly(A) tail length did not ameliorate tauopathy, implicating other functions of the MSUT2/PABPN1 complex in tau proteostasis. Our findings implicate poly(A) RNA binding proteins both as modulators of pathological tau toxicity in AD and as potential molecular targets for interventions to slow neurodegeneration in tauopathies.
Insights
The mammalian suppressor of tauopathy 2 (MSUT2) gene influences Alzheimer's disease (AD) progression by affecting pathological tau. Reducing MSUT2 in mouse models lessened tau toxicity, while its overexpression worsened it, suggesting MSUT2 as a therapeutic target.
Area of Science:
- Neuroscience
- Molecular Biology
- Genetics
Background:
- Pathological tau accumulation drives neurodegeneration in Alzheimer's disease (AD) and tauopathies.
- Understanding genetic modifiers of tau toxicity is crucial for developing effective treatments.
Purpose of the Study:
- To investigate the role of the mammalian suppressor of tauopathy 2 (MSUT2) gene in modulating tau toxicity and neurodegeneration in AD mouse models.
- To explore the relationship between MSUT2, PABPN1, and poly(A) RNA in the context of tauopathy.
Main Methods:
- Utilized transgenic mouse models (PS19 and 4RTauTg2652) with altered MSUT2 expression to study tauopathy.
- Analyzed learning, memory, neurodegeneration, pathological tau accumulation, and neuroinflammation.
- Examined MSUT2 and PABPN1 levels and their association with tau pathology in postmortem human AD brain tissue.
Main Results:
- Loss of MSUT2 in PS19 mice reduced learning deficits, neurodegeneration, and pathological tau.
- MSUT2 overexpression in 4RTauTg2652 mice exacerbated tau deposition and neuroinflammation.
- MSUT2 abundance in human AD brains correlated with earlier disease onset; its co-depletion with PABPN1 was linked to increased neuronal loss.
Conclusions:
- MSUT2 acts as a modifier of tau toxicity, influencing neurodegeneration in AD and related tauopathies.
- MSUT2 and PABPN1, poly(A) RNA binding proteins, may form complexes that impact tau proteostasis through mechanisms beyond poly(A) tail length.
- MSUT2 represents a potential molecular target for therapeutic interventions aimed at slowing neurodegeneration in tauopathies.
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