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Identification of a genetic locus for familial atrial fibrillation
R Brugada1, T Tapscott, G Z Czernuszewicz
1Department of Cardiology, Baylor College of Medicine, Houston, TX 77030, USA.
Insights
Researchers identified a gene locus for familial atrial fibrillation, a common heart rhythm disorder. This discovery advances understanding of the disease
Area of Science:
- Genetics
- Cardiology
- Molecular Biology
Background:
- Atrial fibrillation (AF) is a prevalent cardiac arrhythmia affecting millions, increasing stroke risk in older adults.
- The underlying molecular mechanisms of AF remain largely unknown.
- Familial cases of AF suggest a genetic component.
Purpose of the Study:
- To identify the genetic locus responsible for familial atrial fibrillation.
- To investigate the genetic basis of this common cardiac rhythm disturbance.
Main Methods:
- Utilized a DNA pooling strategy to screen 300 polymorphic markers, significantly reducing sample size for linkage analysis.
- Performed genome-wide screening and linkage analysis across three families with autosomal dominant atrial fibrillation.
- Conducted haplotype analysis to refine the location of the disease locus.
Main Results:
- Identified a disease locus for familial atrial fibrillation on chromosome 10q22-q24, linked to markers D10S569 and D10S607.
- Combined lod scores across three families strongly supported linkage to this region.
- Haplotype analysis localized the locus to an 11.3 centimorgan interval between D10S1694 and D10S1786.
Conclusions:
- The identified gene locus is crucial for understanding the molecular basis of familial atrial fibrillation.
- This finding may provide insights into acquired forms of atrial fibrillation.
- The DNA pooling strategy proved time and cost-effective for accelerating gene mapping.
Background:
Atrial fibrillation, the most common sustained cardiac-rhythm disturbance, affects over 2 million Americans and accounts for one third of all strokes in patients over 65 years of age. The molecular basis for atrial fibrillation is unknown, and palliative therapy is used to control the ventricular rate and prevent systemic emboli. We identified a family of 26 members of whom 10 had atrial fibrillation which segregated as an autosomal dominant disease. We subsequently identified two additional families in which the disease was linked to the same locus.
Methods:
We screened the human genome with 300 polymorphic dinucleotide-repeat markers using an unconventional strategy of pooling the DNA samples into two groups (affected and unaffected), which reduced the sample size by approximately 90 percent, before performing linkage analysis to map the locus. This made it possible to identify potential loci within a few weeks.
Results:
The lod scores for markers D10S569 and D10S607, located at 10q22-q24, were 3.60 in Family 1. The disease locus in Families 2 and 3 was also linked to the same markers, with lod scores of 6.02 and 5.35 for markers D10S569 and D10S607, respectively, when data on all three families were combined. Haplotype analysis of the three families showed that the locus was between D10S1694 and D10S1786, an interval of 11.3 centimorgans.
Conclusions:
Identification of the gene for familial atrial fibrillation will help to elucidate the molecular basis of the disease and provide insights into acquired forms. The strategy of pooling DNA samples for analysis is more time and cost effective than conventional screening and should accelerate the process of gene mapping in the future.
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