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Updated: Jun 26, 2026

Activation and Measurement of NLRP3 Inflammasome Activity Using IL-1β in Human Monocyte-derived Dendritic Cells
Published on: May 22, 2014
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.
Background:
Alzheimer's disease (AD) and related Tauopathies are characterised by the pathologically hyperphosphorylated and aggregated microtubule-associated protein Tau, which is accompanied by neuroinflammation mediated by activated microglia. However, the role of Tau pathology in microglia activation or their causal relationship remains largely elusive.
Methods:
The levels of nucleotide-binding oligomerisation domain (NOD)-like receptor pyrin domain containing 3 (NLRP3) acetylation and inflammasome activation in multiple cell models with Tau proteins treatment, transgenic mice with Tauopathy, and AD patients were measured by Western blotting and enzyme-linked immunosorbent assay. In addition, the acetyltransferase activity of Tau and NLRP3 acetylation sites were confirmed using the test-tube acetylation assay, co-immunoprecipitation, immunofluorescence (IF) staining, mass spectrometry and molecular docking. The Tau-overexpressing mouse model was established by overexpression of human Tau proteins in mouse hippocampal CA1 neurons through the adeno-associated virus injection. The cognitive functions of Tau-overexpressing mice were assessed in various behavioural tests, and microglia activation was analysed by Iba-1 IF staining and [18F]-DPA-714 positron emission tomography/computed tomography imaging. A peptide that blocks the interaction between Tau and NLRP3 was synthesised to determine the in vitro and in vivo effects of Tau-NLRP3 interaction blockade on NLRP3 acetylation, inflammasome activation, microglia activation and cognitive function.
Results:
Excessively elevated NLRP3 acetylation and inflammasome activation were observed in 3xTg-AD mice, microtubule-associated protein Tau P301S (PS19) mice and AD patients. It was further confirmed that mimics of 'early' phosphorylated-Tau proteins which increase at the initial stage of diseases with Tauopathy, including TauT181E, TauS199E, TauT217E and TauS262E, significantly promoted Tau-K18 domain acetyltransferase activity-dependent NLRP3 acetylation and inflammasome activation in HEK293T and BV-2 microglial cells. In addition, Tau protein could directly acetylate NLRP3 at the K21, K22 and K24 sites at its PYD domain and thereby induce inflammasome activation in vitro. Overexpression of human Tau proteins in mouse hippocampal CA1 neurons resulted in impaired cognitive function, Tau transmission to microglia and microgliosis with NLRP3 acetylation and inflammasome activation. As a targeted intervention, competitive binding of a designed Tau-NLRP3-binding blocking (TNB) peptide to block the interaction of Tau protein with NLRP3 inhibited the NLRP3 acetylation and downstream inflammasome activation in microglia, thereby alleviating microglia activation and cognitive impairment in mice.
Conclusions:
In conclusion, our findings provide evidence for a novel role of Tau in the regulation of microglia activation through acetylating NLRP3, which has potential implications for early intervention and personalised treatment of AD and related Tauopathies.
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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