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.

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.