4.8 Article

Genome-wide screening identifies a KCNIP1 copy number variant as a genetic predictor for atrial fibrillation

Journal

NATURE COMMUNICATIONS
Volume 7, Issue -, Pages -

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/ncomms10190

Keywords

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Funding

  1. National Taiwan University Hospital, Taipei, Taiwan [100CGN10, 100-S1650, UN102-052, 102-S2155, 102-P04, 103-P05, 103-P06]
  2. Ministry of Science and Technology [99-2314-B-002-118-MY3, 101-2314-B-002-181-MY3, 102-2628-B-002-035-MY3, 104-2314-B-002-194-MY3]
  3. New Century Health Care Promotion Foundation
  4. Clinical Trial and Research Center of the National Taiwan University Hospital, Taipei, Taiwan

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Atrial fibrillation (AF) is the most common sustained cardiac arrhythmia. Previous genome-wide association studies had identified single-nucleotide polymorphisms in several genomic regions to be associated with AF. In human genome, copy number variations (CNVs) are known to contribute to disease susceptibility. Using a genome-wide multistage approach to identify AF susceptibility CNVs, we here show a common 4,470-bp diallelic CNV in the first intron of potassium interacting channel 1 gene (KCNIP1) is strongly associated with AF in Taiwanese populations (odds ratio = 2.27 for insertion allele; P = 6.23 x 10(-24)). KCNIP1 insertion is associated with higher KCNIP1 mRNA expression. KCNIP1-encoded protein potassium interacting channel 1 (KCHIP1) is physically associated with potassium Kv channels and modulates atrial transient outward current in cardiac myocytes. Overexpression of KCNIP1 results in inducible AF in zebrafish. In conclusions, a common CNV in KCNIP1 gene is a genetic predictor of AF risk possibly pointing to a functional pathway.

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