Variants in the MS4A cluster interact with soluble TREM2 expression on biomarkers of neuropathology

Rebecca L Winfree1,2,3, Emma Nolan4,5, Logan Dumitrescu4,6,7

  • 1Vanderbilt Memory and Alzheimer's Center, Vanderbilt University Medical Center, Nashville, TN, USA. rebecca.l.weiner@vanderbilt.edu.

PubMed

Insights

Genetic variants in the MS4A locus influence Alzheimer's disease (AD) risk by modulating soluble TREM2 (sTREM2) levels. The protective variant rs1582763 decouples sTREM2 from amyloid-beta, offering mechanistic insights into AD.

Area of Science:

  • Neuroscience
  • Genetics
  • Biomarker Research

Background:

  • Alzheimer's disease (AD) is linked to genetic risk variants in the MS4A locus, which significantly regulate soluble TREM2 (sTREM2) levels.
  • Previous findings indicate higher sTREM2 is associated with increased amyloid-beta (Aβ) and blood-brain barrier (BBB) dysfunction, complicating interpretation.

Purpose of the Study:

  • To investigate the modifying role of MS4A genetic variants on the association between sTREM2 and AD neuropathology.
  • To explore how these variants influence the relationship between sTREM2 levels and AD biomarkers.

Main Methods:

  • Biomarker analyses in the Vanderbilt Memory & Aging Project (VMAP) and Alzheimer's Disease Neuroimaging Initiative (ADNI) cohorts.
  • Autopsy-based analyses in the Religious Orders Study and Rush Memory and Aging Project (ROS/MAP).
  • Investigated interactions between genetic variants (rs1582763, rs6591561) and sTREM2/TREM2 mRNA with AD biomarkers (Aβ, CSF tau, BBB integrity).

Main Results:

  • The protective variant rs1582763 attenuated the association between CSF sTREM2 and Aβ40 in VMAP and ADNI.
  • This variant appeared to enhance the association between sTREM2 and blood-brain barrier dysfunction.
  • The risk variant rs6591561 did not show significant interactions with outcomes across datasets.

Conclusions:

  • The protective variant rs1582763 may mitigate AD risk by decoupling sTREM2 from amyloid-beta.
  • Genetic context is crucial for interpreting sTREM2 levels as a potential clinical biomarker for AD.
  • Findings provide mechanistic insights into sTREM2 regulation and its role in AD pathogenesis.

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