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Published on: June 6, 2025
PLCG2 protective variant p.P522R modulates tau pathology and disease progression in patients with mild cognitive
Luca Kleineidam1,2,3, Vincent Chouraki4,5, Tomasz Próchnicki6
1Department of Neurodegenerative Diseases and Geriatric Psychiatry, University Hospital Bonn, Bonn, Germany.
Abstract:
A rare coding variant (rs72824905, p.P522R) conferring protection against Alzheimer's disease (AD) was identified in the gene encoding the enzyme phospholipase-C-γ2 (PLCG2) that is highly expressed in microglia. To explore the protective nature of this variant, we employed latent process linear mixed models to examine the association of p.P522R with longitudinal cognitive decline in 3595 MCI patients, and in 10,097 individuals from population-based studies. Furthermore, association with CSF levels of pTau181, total tau, and Aβ1-42 was assessed in 1261 MCI patients. We found that MCI patients who carried the p.P522R variant showed a slower rate of cognitive decline compared to non-carriers and that this effect was mediated by lower pTau181 levels in CSF. The effect size of the association of p.P522R with the cognitive decline and pTau181 was similar to that of APOE-ε4, the strongest genetic risk factor for AD. Interestingly, the protective effect of p.P522R was more pronounced in MCI patients with low Aβ1-42 levels suggesting a role of PLCG2 in the response to amyloid pathology. In line with this hypothesis, we observed no protective effect of the PLCG2 variant on the cognitive decline in population-based studies probably due to the lower prevalence of amyloid positivity in these samples compared to MCI patients. Concerning the potential biological underpinnings, we identified a network of co-expressed proteins connecting PLCG2 to APOE and TREM2 using unsupervised co-regulatory network analysis. The network was highly enriched for the complement cascade and genes differentially expressed in disease-associated microglia. Our data show that p.P522R in PLCG2 reduces AD disease progression by mitigating tau pathology in the presence of amyloid pathology and, as a consequence, maintains cognitive function. Targeting the enzyme PLCG2 might provide a new therapeutic approach for treating AD.
Insights
A rare genetic variant in the phospholipase-C-γ2 (PLCG2) gene slows Alzheimer's disease progression by reducing tau pathology. This discovery offers a potential new therapeutic target for Alzheimer's disease (AD).
Area of Science:
- Neuroscience
- Genetics
- Biochemistry
Background:
- Alzheimer's disease (AD) is a progressive neurodegenerative disorder characterized by cognitive decline.
- Genetic factors, such as APOE-ε4, significantly influence AD risk and progression.
- Phospholipase-C-γ2 (PLCG2), highly expressed in microglia, plays a role in immune responses within the brain.
Purpose of the Study:
- To investigate the protective effect of a rare PLCG2 coding variant (p.P522R) against Alzheimer's disease (AD) progression.
- To examine the association of the p.P522R variant with cognitive decline and cerebrospinal fluid (CSF) AD biomarkers.
- To explore the underlying biological mechanisms connecting PLCG2 to AD pathology.
Main Methods:
- Latent process linear mixed models were used to analyze the association of the p.P522R variant with longitudinal cognitive decline in patients with mild cognitive impairment (MCI) and population-based cohorts.
- Cerebrospinal fluid (CSF) levels of pTau181, total tau, and Aβ1-42 were assessed in MCI patients.
- Unsupervised co-regulatory network analysis was employed to identify protein interaction networks involving PLCG2.
Main Results:
- Carriers of the p.P522R variant exhibited a slower rate of cognitive decline in MCI patients, mediated by lower CSF pTau181 levels.
- The effect size of p.P522R on cognitive decline and pTau181 was comparable to that of APOE-ε4.
- A PLCG2-centered network enriched for complement cascade and microglia-associated genes was identified, linking PLCG2 to APOE and TREM2.
Conclusions:
- The p.P522R variant in PLCG2 mitigates AD progression by reducing tau pathology in the presence of amyloid pathology, thereby preserving cognitive function.
- PLCG2 plays a role in the brain's response to amyloid pathology, particularly in microglia.
- Targeting the PLCG2 enzyme represents a promising therapeutic strategy for Alzheimer's disease (AD).
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