The protective PLCγ2-P522R variant mitigates Alzheimer's disease-associated pathologies by enhancing beneficial

Mari Takalo1, Heli Jeskanen2, Taisia Rolova3

  • 1Institute of Biomedicine, University of Eastern Finland, Kuopio, Finland. mari.takalo@uef.fi.

PubMed
Abstract

Insights

The PLCγ2-P522R variant, a protective factor against Alzheimer's disease (AD), enhances microglial function. This variant reduces amyloid pathology and improves microglial metabolic capacity in AD mouse and human models.

Area of Science:

  • Neuroscience
  • Genetics
  • Immunology

Background:

  • Phospholipase C gamma 2, proline 522 to arginine (PLCγ2-P522R) is a protective variant against Alzheimer's disease (AD).
  • Previous studies showed PLCγ2-P522R mitigates beta-amyloid (Aβ) pathology in the 5XFAD mouse model.
  • This study investigates PLCγ2-P522R in the APP/PS1 AD mouse model and its cellular mechanisms in microglial models.

Purpose of the Study:

  • To investigate the protective functions of the PLCγ2-P522R variant in the APP/PS1 mouse model of AD.
  • To assess the underlying cellular and molecular mechanisms of PLCγ2-P522R using mouse and human microglial models.
  • To evaluate the impact of PLCγ2-P522R on Aβ pathology, microglial activation, and neuronal health.

Main Methods:

  • Crossbreeding PLCγ2-P522R knock-in mice with APP/PS1 mice to study AD phenotypes.
  • Utilizing transcriptomic, proteomic, and functional assays on isolated mouse microglia.
  • Employing human monocyte-derived microglia-like cells from PLCγ2-P522R variant carriers.

Main Results:

  • PLCγ2-P522R reduced Aβ plaque load and coverage in female APP/PS1 mice, while increasing anxiety.
  • Increased microglial area around plaques, reduced neuronal dystrophy, and decreased IL-6/IL-1β levels were observed.
  • PLCγ2-P522R decreased lipid droplet size, modulated lipid metabolism and inflammatory signaling, and enhanced mitochondrial respiration in microglial models.

Conclusions:

  • The PLCγ2-P522R variant confers protection against Aβ and neuronal pathologies by enhancing microglial responsiveness.
  • The variant's protective effects are linked to increased microglial metabolic capacity, particularly in lipid and mitochondrial metabolism.
  • Findings highlight the therapeutic potential of targeting microglial metabolism in AD treatment.