Role of Genetic Variation in Transcriptional Regulatory Elements in Heart Rhythm.

Cells

Department of Medical Biology, Amsterdam Cardiovascular Sciences, Amsterdam University Medical Centers, 1105 AZ Amsterdam, The Netherlands.

Published: December 2023

AI Article Synopsis

  • Genetic predisposition to cardiac arrhythmias has been studied extensively, from rare hereditary types to the role of genetic variations like single nucleotide polymorphisms in heart conditions over the last 20 years.
  • Recent genome-wide association studies have discovered numerous genomic locations linked to heart rhythm traits and arrhythmias, particularly highlighting variants in non-coding regulatory elements that influence gene expression related to heart function.
  • Despite progress, challenges remain in pinpointing causal variants and understanding their effects on heart rhythm due to the complex and varied roles of regulatory elements across different tissues and conditions.

Article Abstract

Genetic predisposition to cardiac arrhythmias has been a field of intense investigation. Research initially focused on rare hereditary arrhythmias, but over the last two decades, the role of genetic variation (single nucleotide polymorphisms) in heart rate, rhythm, and arrhythmias has been taken into consideration as well. In particular, genome-wide association studies have identified hundreds of genomic loci associated with quantitative electrocardiographic traits, atrial fibrillation, and less common arrhythmias such as Brugada syndrome. A significant number of associated variants have been found to systematically localize in non-coding regulatory elements that control the tissue-specific and temporal transcription of genes encoding transcription factors, ion channels, and other proteins. However, the identification of causal variants and the mechanism underlying their impact on phenotype has proven difficult due to the complex tissue-specific, time-resolved, condition-dependent, and combinatorial function of regulatory elements, as well as their modest conservation across different model species. In this review, we discuss research efforts aimed at identifying and characterizing-trait-associated variant regulatory elements and the molecular mechanisms underlying their impact on heart rate or rhythm.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10777909PMC
http://dx.doi.org/10.3390/cells13010004DOI Listing

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