Exome Chip Analysis Identifies Low-Frequency and Rare Variants in MRPL38 for White Matter Hyperintensities on Brain

Xueqiu Jian1, Claudia L Satizabal2, Albert V Smith3

  • 1From the Institute of Molecular Medicine, McGovern Medical School at The University of Texas Health Science Center at Houston (M.F., X.J.).

Stroke
|July 14, 2018
PubMed

Insights

This study reveals that both common and rare genetic variants contribute to white matter hyperintensities (WMH), a marker of brain aging and stroke risk. Further research is needed to confirm these genetic links and understand their biological impact.

Area of Science:

  • Genetics
  • Neurology
  • Biomedical Research

Background:

  • White matter hyperintensities (WMH) are key indicators of cerebral small vessel disease and preclinical neurological disorders.
  • While WMH heritability is high, common genetic variants explain only a small fraction of their variance.
  • The role of low-frequency/rare coding variants in WMH burden remains largely unexplored.

Purpose of the Study:

  • To investigate the contribution of low-frequency/rare coding variants to white matter hyperintensities (WMH) burden.
  • To identify novel genetic associations with WMH in large, diverse population cohorts.
  • To explore the combined influence of common and rare variants on WMH.

Main Methods:

  • Meta-analysis of exome genotyping data from 20,719 adults across 13 population-based cohorts.
  • Ethnicity-specific linear regression tested associations between variants and WMH.
  • Replication analysis in independent cohorts with whole exome/genome sequencing data.

Main Results:

  • Confirmed associations of common variants in TRIM65, FBF1, and ACOX1 at 17q25.
  • Identified novel associations with two low-frequency variants in MRPL38 (lead: rs34136221) at 17q25.
  • Discovered a new locus at 2q33 with common variants in NBEAL1, CARF, and WDR12 (lead: rs2351524).

Conclusions:

  • Both common and low-frequency/rare functional variants significantly influence white matter hyperintensities (WMH).
  • The identified MRPL38 variants suggest a role for low-frequency variants in WMH.
  • Larger replication studies and experimental follow-up are crucial to validate findings and elucidate biological mechanisms of WMH.

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