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September 10, 2025Nature37 citationsOpen Access

PICALM Alzheimer’s risk allele causes aberrant lipid droplets in microglia

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AKAlena KozlovaSZSiwei ZhangASAri Sudwarts

Key Points

  • Microglia with the PICALM risk allele showed impaired amyloid beta uptake and increased lipid droplet accumulation, indicating a vital pathological mechanism.
  • Allele-specific open-chromatin mapping linked the rs10792832 risk allele to reduced transcription factor binding, affecting PICALM expression directly.
  • Genetic and pharmacological perturbations in microglia confirmed the connection between PICALM expression reduction, lipid droplet accumulation, and phagocytic deficits.
  • This research highlights the role of microglial-specific pathways in late-onset Alzheimer's disease, providing insights for potential therapeutic interventions.

Abstract

Despite genome-wide association studies (GWAS) of late-onset Alzheimer's disease (LOAD) having identified many genetic risk loci1–3, the underlying disease mechanisms remain largely unclear. Determining causal disease variants and their LOAD-relevant cellular phenotypes has been a challenge. Here, using our approach for identifying functional GWAS risk variants showing allele-specific open chromatin, we systematically identified putative causal LOAD-risk variants in human induced pluripotent stem (iPS)-cell-derived neurons, astrocytes and microglia, and linked a PICALM LOAD-risk allele to a microglial-specific role of PICALM in lipid droplet (LD) accumulation. Allele-specific open-chromatin mapping revealed functional risk variants for 26 LOAD-risk loci, mostly specific to microglia. At the microglial-specific PICALM locus, the LOAD-risk allele of the single-nucleotide polymorphism rs10792832 reduced transcription factor (PU.1) binding and PICALM expression, impairing the uptake of amyloid beta (Aβ) and myelin debris. Notably, microglia carrying the PICALM risk allele showed transcriptional enrichment of pathways for cholesterol synthesis and LD formation. Genetic and pharmacological perturbations of microglia further established a causal link between reduced PICALM expression, LD accumulation and phagocytosis deficits. Our work elucidates the selective LOAD vulnerability in microglia at the PICALM locus through detrimental LD accumulation, providing a neurobiological basis that can be exploited for developing clinical interventions. A PICALM allele associated with increased risk of late-onset Alzheimer's disease has a microglial-specific role in lipid droplet accumulation.

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Cite This Study

Kozlova et al. (2025) studied this question.

synapsesocial.com/papers/68c1840e9b7b07f3a06106a4https://doi.org/10.1038/s41586-025-09486-x
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