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May 17, 2026Nature Aging5 citationsOpen Access

Proteomic signatures of the APOE ε4 and APOE ε2 genetic variants and Alzheimer’s disease

LLLina LuABAlexa Pichet BinetteIHInès Hristovska

Key Points

  • This research aims to understand how the APOE genetic variants ε4 and ε2 influence Alzheimer’s disease risk through proteomic analysis.
  • Conducted multicohort proteomic analysis across plasma and cerebrospinal fluid in multiple cohorts (GNPC, BioFINDER-2, ADNI, UK BioBank, and PPMI).
  • Analyzed protein alterations linked to APOE2 and APOE4 to determine their associations with Alzheimer’s disease risk and pathology.
  • Examined allele-specific molecular mechanisms and identified biomarkers and potential targets for interventions.
  • APOE2 is associated with proteins linked to cellular maintenance and anti-inflammatory processes, while APOE4 is associated with factors tied to immune and vascular dysfunction.
  • Distinct molecular architectures were identified for APOE2 and APOE4, highlighting their roles in Alzheimer’s disease risk.
  • Biomarkers for potential allele-specific interventions were uncovered, related to proteostatic dysfunction and cell-cycle regulation.

Abstract

Abstract The APOE locus is the strongest genetic factor for Alzheimer’s disease, with ε4 increasing and ε2 decreasing risk, yet the basis of these opposing effects remains unclear. Here we performed a multicohort proteomic analysis across plasma and cerebrospinal fluid in GNPC, BioFINDER-2, ADNI, UK BioBank, and PPMI. APOE -associated protein alterations are detectable before amyloid pathology and remain stable across age and disease progression. APOE2 -associated proteins were enriched in pathways related to cellular maintenance and anti-inflammatory processes. By contrast, APOE4 showed a limited set of upstream mediators linked to cell-cycle and oligodendrocyte precursor cell biology, and a broader group of proteins reflecting vascular, immune, and proteostatic dysfunction shaped by downstream pathology. Comparative analyses highlighted allele-specific mediators and oppositely regulated proteins contributing to differential disease risk. Together, these findings reveal that APOE2 and APOE4 shape Alzheimer’s disease risk through distinct molecular architectures and identify candidate biomarkers and targets for allele-specific interventions.

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Cite This Study

Lu et al. (2026) studied this question.

synapsesocial.com/papers/6a095b1b7880e6d24efe0d55https://doi.org/10.1038/s43587-026-01123-0
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