A Novel Mechanism for Human Cardiac Ankyrin-B Syndrome due to Reciprocal Chromosomal Translocation

A J Huq1, M D Pertile2, A M Davis3

  • 1Department of Clinical Genetics, Austin Hospital, Melbourne, Vic, Australia; Department of Genetic Medicine, Royal Melbourne Hospital, Melbourne, Vic, Australia.

Heart, Lung & Circulation
|December 6, 2016
PubMed

Insights

Chromosomal translocations disrupting the ANK2 gene cause cardiac rhythm abnormalities, similar to ANK2 gene mutations. This finding expands understanding of the genetic basis for ankyrin-B syndrome.

Area of Science:

  • Genetics and Molecular Biology
  • Cardiology

Background:

  • Cardiac rhythm abnormalities are a major cause of death.
  • Loss-of-function variants in the ANK2 gene lead to ankyrin-B syndrome, characterized by various arrhythmias.
  • ANK2 is crucial for cardiac ion channel and transporter function.

Observation:

  • A family presented with a chromosomal translocation affecting the ANK2 gene.
  • Translocation resulted in ANK2 haploinsufficiency and ankyrin-B syndrome in affected members.
  • Lymphoblasts from carriers showed reduced ankyrin-B and downstream partner expression.

Findings:

  • Chromosomal translocations causing ANK2 haploinsufficiency can lead to human cardiac ankyrin-B syndrome.
  • This is comparable to ANK2 loss-of-function point mutations.
  • ANK2 dysfunction was identified through chromosomal translocation discovery.

Implications:

  • Chromosomal translocations are a significant cause of ANK2-related cardiac disorders.
  • This broadens the spectrum of genetic defects leading to ankyrin-B syndrome.
  • Challenges in screening and treatment strategies for this condition are highlighted.
Abstract

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