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Heterozygous expression of the Alzheimer's disease-protective PLCγ2 P522R variant enhances Aβ clearance while
Shiden Solomon1,2, Nirmal Kumar Sampathkumar3,4,5, Ivo Carre3,4
1Department of Basic and Clinical Neuroscience, Institute of Psychiatry, Psychology and Neuroscience, King's College London, London, UK. shiden.solomon@kcl.ac.uk.
Background:
A rare coding variant, P522R, in the phospholipase C gamma 2 (PLCG2) gene has been identified as protective against late-onset Alzheimer's disease (AD), but the mechanism is unknown. PLCG2 is exclusively expressed in microglia within the central nervous system, and altered microglial function has been implicated in the progression of AD.
Methods:
Healthy control hiPSCs were CRISPR edited to generate cells heterozygous and homozygous for the PLCG2P522R variant. Microglia derived from these hiPSC's were used to investigate the impact of PLCγ2P522R on disease relevant processes, specifically microglial capacity to take up amyloid beta (Aβ) and synapses. Targeted qPCR assessment was conducted to explore expression changes in core AD linked and microglial genes, and mitochondrial function was assessed using an Agilent Seahorse assay.
Results:
Heterozygous expression of the P522R variant resulted in increased microglial clearance of Aβ, while preserving synapses. This was associated with the upregulation of a number of genes, including the anti-inflammatory cytokine Il-10, and the synapse-linked CX3CR1, as well as alterations in mitochondrial function, and increased cellular motility. The protective capacity of PLCγ2P522R appeared crucially dependent on (gene) 'dose', as cells homozygous for the variant showed reduced synapse preservation, and a differential gene expression profile relative to heterozygous cells.
Conclusion:
These findings suggest that PLCγ2P522R may result in increased surveillance by microglia, and prime them towards an anti-inflammatory state, with an increased capacity to respond to increasing energy demands, but highlights the delicate balance of this system, with increasing PLCγ2P522R 'dose' resulting in reduced beneficial impacts.
Insights
The P522R variant in phospholipase C gamma 2 (PLCG2) enhances microglial clearance of amyloid beta and preserves synapses in Alzheimer's disease models. However, the protective effects are dose-dependent, with homozygous variants showing reduced benefits.
Area of Science:
- Neuroscience
- Genetics
- Immunology
Background:
- A rare variant, P522R, in the phospholipase C gamma 2 (PLCG2) gene is protective against Alzheimer's disease (AD).
- PLCG2 is expressed in microglia, key immune cells in the brain implicated in AD progression.
- The mechanism by which PLCG2 P522R confers protection remains unknown.
Purpose of the Study:
- To investigate the functional impact of the PLCG2 P522R variant on microglial functions relevant to Alzheimer's disease.
- To determine how PLCG2 P522R affects amyloid beta clearance, synaptic integrity, and gene expression in microglia.
Main Methods:
- Human induced pluripotent stem cells (hiPSCs) were CRISPR-edited to introduce PLCG2 P522R (heterozygous and homozygous).
- Microglia derived from edited hiPSCs were analyzed for amyloid beta uptake and synaptic interactions.
- Gene expression (qPCR) and mitochondrial function (Seahorse assay) were assessed.
Main Results:
- Heterozygous PLCG2 P522R increased microglial amyloid beta clearance and preserved synapses.
- This was associated with upregulated anti-inflammatory (Il-10) and synapse-related (CX3CR1) genes, altered mitochondrial function, and increased motility.
- Homozygous PLCG2 P522R showed reduced synapse preservation and a different gene expression profile, indicating a dose-dependent effect.
Conclusions:
- The PLCG2 P522R variant may enhance microglial surveillance and promote an anti-inflammatory state.
- The variant appears to improve microglial response to energy demands.
- The beneficial effects of PLCG2 P522R are dose-dependent, with higher expression leading to diminished protective impacts.
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