AI Article Synopsis

  • PLCγ2 plays a key role in breaking down PIP into signaling molecules DAG and IP, which are important for various cellular functions and are linked to Alzheimer's disease risk and longevity.
  • Researchers examined the brains of different genotypes of mice (KO, HET, and WT) using multiomics techniques and found sex-specific alterations in lipid content and myelin-related gene expression due to PLCγ2 depletion.
  • The study highlights that loss of PLCγ2 leads to subtle changes in microglia and oligodendrocyte density, affecting brain homeostasis and potentially increasing vulnerability to Alzheimer's disease and aging-related issues through previously unknown pathways.

Article Abstract

Phospholipase C gamma-2 (PLCγ2) catalyzes the hydrolysis of the membrane phosphatidylinositol-4,5-bisphosphate (PIP) to form diacylglycerol (DAG) and inositol trisphosphate (IP), which subsequently feed into numerous downstream signaling pathways. PLCG2 polymorphisms are associated with both reduced and increased risk of Alzheimer's disease (AD) and with longevity. In the brain, PLCG2 is highly expressed in microglia, where it is proposed to regulate phagocytosis, secretion of cytokines/chemokines, cell survival and proliferation. We analyzed the brains of three-month-old PLCγ2 knockout (KO), heterozygous (HET), and wild-type (WT) mice using multiomics approaches, including shotgun lipidomics, proteomics, and gene expression profiling, and immunofluorescence. Lipidomic analyses revealed sex-specific losses of total cerebrum PIP and decreasing trends of DAG content in KOs. In addition, PLCγ2 depletion led to significant losses of myelin-specific lipids and decreasing trends of myelin-enriched lipids. Consistent with our lipidomics results, RNA profiling revealed sex-specific changes in the expression levels of several myelin-related genes. Further, consistent with the available literature, gene expression profiling revealed subtle changes on microglia phenotype in mature adult KOs under baseline conditions, suggestive of reduced microglia reactivity. Immunohistochemistry confirmed subtle differences in density of microglia and oligodendrocytes in KOs. Exploratory proteomic pathway analyses revealed changes in KO and HET females compared to WTs, with over-abundant proteins pointing to mTOR signaling, and under-abundant proteins to oligodendrocytes. Overall, our data indicate that loss of PLCγ2 has subtle effects on brain homeostasis that may underlie enhanced vulnerability to AD pathology and aging via novel mechanisms in addition to regulation of microglia function.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10723468PMC
http://dx.doi.org/10.1101/2023.12.06.570499DOI Listing

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