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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.
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.
Background:
Cardiac rhythm abnormalities are a leading cause of morbidity and mortality in developed countries. Loss-of-function variants in the ANK2 gene can cause a variety of cardiac rhythm abnormalities including sinus node dysfunction, atrial fibrillation and ventricular arrhythmias (called the "ankyrin-B syndrome"). ANK2 encodes ankyrin-B, a molecule critical for the membrane targeting of key cardiac ion channels, transporters, and signalling proteins.
Methods And Results:
Here, we describe a family with a reciprocal chromosomal translocation between chromosomes 4q25 and 9q26 that transects the ANK2 gene on chromosome 4 resulting in loss-of-function of ankyrin-B. Select family members with ankyrin-B haploinsufficiency due to the translocation displayed clinical features of ankyrin-B syndrome. Furthermore, evaluation of primary lymphoblasts from a carrier of the translocation showed altered levels of ankyrin-B as well as a reduced expression of downstream ankyrin-binding partners.
Conclusions:
Thus, our data conclude that, similar to previously described ANK2 loss-of-function "point mutations", large chromosomal translocations resulting in ANK2 haploinsufficiency are sufficient to cause the human cardiac ankyrin-B syndrome. The unexpected ascertainment of ANK2 dysfunction via the discovery of a chromosomal translocation in this family, the determination of the familial phenotype, as well as the complexities in formulating screening and treatment strategies are discussed.
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