Tau induces inflammasome activation and microgliosis through acetylating NLRP3

Lun Zhang1,2, Yongkang Gai3, Yushuang Liu4

  • 1Department of Pathophysiology, School of Basic Medicine, Key Laboratory of Education Ministry of China/Hubei Province for Neurological Disorders, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, China.

Abstract

Insights

This study reveals that Tau protein directly acetylates NLRP3 (nucleotide-binding oligomerisation domain-like receptor pyrin domain containing 3), driving neuroinflammation in Alzheimer's disease (AD) and Tauopathies. Blocking this interaction alleviates cognitive impairment and microglia activation.

Area of Science:

  • Neuroscience
  • Molecular Biology
  • Immunology

Background:

  • Alzheimer's disease (AD) and Tauopathies are characterized by hyperphosphorylated Tau protein aggregates and associated neuroinflammation.
  • The precise role of Tau pathology in initiating or mediating microglia activation in these neurodegenerative diseases remains unclear.

Purpose of the Study:

  • To investigate the causal relationship between Tau pathology and microglia activation.
  • To elucidate the molecular mechanisms by which Tau influences neuroinflammation, specifically involving the NLRP3 inflammasome.

Main Methods:

  • Assessed NLRP3 (nucleotide-binding oligomerisation domain-like receptor pyrin domain containing 3) acetylation and inflammasome activation in cell models, transgenic mice, and AD patients.
  • Utilized biochemical assays, mass spectrometry, and molecular docking to confirm Tau's acetyltransferase activity on NLRP3.
  • Established a Tau-overexpressing mouse model to assess cognitive function and microglia activation, and tested a Tau-NLRP3 interaction blocking peptide.

Main Results:

  • Elevated NLRP3 acetylation and inflammasome activation were observed in various models of Tauopathy and in AD patients.
  • Phosphorylated Tau variants significantly promoted NLRP3 acetylation and inflammasome activation, with Tau directly acetylating NLRP3 at specific sites.
  • Tau overexpression in mice led to cognitive decline and microglia activation, which was ameliorated by a peptide blocking Tau-NLRP3 interaction.

Conclusions:

  • Tau protein directly regulates microglia activation by acetylating NLRP3, representing a novel mechanism in AD and Tauopathies.
  • Targeting the Tau-NLRP3 interaction offers a potential therapeutic strategy for early intervention and personalized treatment of these neurodegenerative conditions.

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