4.6 Article

An intronic VNTR affects splicing of ABCA7 and increases risk of Alzheimer's disease

期刊

ACTA NEUROPATHOLOGICA
卷 135, 期 6, 页码 827-837

出版社

SPRINGER
DOI: 10.1007/s00401-018-1841-z

关键词

Alzheimer's disease; ATP-Binding Cassette, Sub-Family A, Member 7 (ABCA7); Variable number tandem repeat (VNTR); Alternative splicing; Cerebrospinal fluid (CSF) biomarkers

资金

  1. Alzheimer Research Foundation (SAO-FRA)
  2. Belgian Science Policy Office Interuniversity Attraction Poles program
  3. Flemish government-initiated Flanders Impulse Program on Networks for Dementia Research (VIND)
  4. Flemish government-initiated Methusalem excellence program
  5. VIB Technology Fund
  6. Research Foundation Flanders (FWO) [G030718N, 1S4421216N]
  7. University of Antwerp Research Fund, Belgium
  8. FWO
  9. Belgian Rotary

向作者/读者索取更多资源

Mutations leading to premature termination codons in ATP-Binding Cassette Subfamily A Member 7 (ABCA7) are high penetrant risk factors of Alzheimer's disease (AD). The influence of other genetic variants in ABCA7 and downstream functional mechanisms, however, is poorly understood. To address this knowledge gap, we investigated tandem repetitive regions in ABCA7 in a Belgian cohort of 1529 AD patients and control individuals and identified an intronic variable number tandem repeat (VNTR). We observed strong association between VNTR length and a genome-wide associated signal for AD in the ABCA7 locus. Expanded VNTR alleles were highly enriched in AD patients [odds ratio = 4.5 (1.3-24.2)], and VNTR length inversely correlated with amyloid beta(1-42) in cerebrospinal fluid and ABCA7 expression. In addition, we identified three novel ABCA7 alternative splicing events. One isoform in particular-which is formed through exon 19 skipping-lacks the first nucleotide binding domain of ABCA7 and is abundant in brain tissue. We observed a tight correlation between exon 19 skipping and VNTR length. Our findings underline the importance of studying repetitive DNA in complex disorders and expand the contribution of genetic and transcript variation in ABCA7 to AD.

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