4.8 Article

Long-range Pitx2c enhancer-promoter interactions prevent predisposition to atrial fibrillation

Publisher

NATL ACAD SCIENCES
DOI: 10.1073/pnas.1907418116

Keywords

atrial fibrillation; PITX2; genome topology; epigenetics

Funding

  1. National Institutes of Health [DE023177, HL127717, HL130804, HL118761, F31HL136065, HL140187]
  2. Vivian L. Smith Foundation
  3. Fondation LeDucq Transatlantic Networks of Excellence in Cardiovascular Research Grant [14CVD01]
  4. Chinese Postdoctoral Science Foundation [2016M601610]
  5. Intellectual and Developmental Disabilities Research Center [1U54 HD083092]
  6. Eunice Kennedy Shriver National Institute of Child Health and Human Development
  7. Mouse Phenotyping Core Grant [U54 HG006348]

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Genome-wide association studies found that increased risk for atrial fibrillation (AF), the most common human heart arrhythmia, is associated with noncoding sequence variants located in proximity to PITX2. Cardiomyocyte-specific epigenomic and comparative genomics uncovered 2 AF-associated enhancers neighboring PITX2 with varying conservation in mice. Chromosome conformation capture experiments in mice revealed that the Pitx2c promoter diredly contacted the AF-associated enhancer regions. CRISPR/Cas9mediated deletion of a 20-kb topologically engaged enhancer led to reduced Pitx2c transcription and AF predisposition. Allele-specific chromatin immunoprecipitation sequencing on hybrid heterozygous enhancer knockout mice revealed that long-range interaction of an AF-associated region with the Pitx2c promoter was required for maintenance of the Pitx2c promoter chromatin state. Long-range looping was mediated by CCCTC-binding factor (CTCF), since genetic disruption of the intronic CTCF-binding site caused reduced Pitx2c expression, AF predisposition, and diminished active chromatin marks on Pitx2. AF risk variants located at 4q25 reside in genomic regions possessing long-range transcriptional regulatory functions directed at PITX2.

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