4.8 Article

Non-coding variability at the APOE locus contributes to the Alzheimer's risk

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NATURE COMMUNICATIONS
卷 10, 期 -, 页码 -

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NATURE PORTFOLIO
DOI: 10.1038/s41467-019-10945-z

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资金

  1. National Basic Research Program of China (973 Program) [2013CB530900]
  2. Hong Kong Research Grants Council Theme-based Research Scheme [T13-607/12R]
  3. General Research Fund [GRF CUHK 471911]
  4. Area of Excellence Scheme of the University Grants Committee [AoE/M-604/16]
  5. Innovation Technology Commission [ITS/393/15FP, ITCPD/17-9]
  6. National Natural Science Foundation of China [31671047, 31400923]
  7. National Key R&D Program of China [SQ2018YFE020417, 2017YFE0190000]
  8. Guangdong Provincial Key ST Program [2018B030336001]
  9. Shenzhen Knowledge Innovation Program [JCYJ20151030140325152, JCYJ20170413173717055, JCYJ20151030154629774, JCYJ20170413165053031, JCYJ20160428145818099]
  10. Hing Kee Java Edible Bird's Nest (HKJEBN) Company Limited Scholarship for Health and Quality Living
  11. MRC [G0901254, MR/K01417X/1, MR/N026004/1, UKDRI-1009, G0701075] Funding Source: UKRI

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Alzheimer's disease (AD) is a leading cause of mortality in the elderly. While the coding change of APOE-epsilon 4 is a key risk factor for late-onset AD and has been believed to be the only risk factor in the APOE locus, it does not fully explain the risk effect conferred by the locus. Here, we report the identification of AD causal variants in PVRL2 and APOC1 regions in proximity to APOE and define common risk haplotypes independent of APOE-epsilon 4 coding change. These risk haplotypes are associated with changes of AD-related endophenotypes including cognitive performance, and altered expression of APOE and its nearby genes in the human brain and blood. High-throughput genome-wide chromosome conformation capture analysis further supports the roles of these risk haplotypes in modulating chromatin states and gene expression in the brain. Our findings provide compelling evidence for additional risk factors in the APOE locus that contribute to AD pathogenesis.

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