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Genetic heterogeneity of heart-hand syndromes
C T Basson1, S D Solomon, B Weissman
1Department of Medicine-Cardiovascular Division, Brigham and Women's Hospital, Boston, Mass.
Insights
Heart-hand syndromes, like Holt-Oram syndrome, involve congenital heart and limb defects. Genetic studies show Holt-Oram syndrome is linked to chromosome 12q2, but other similar conditions arise from different genes, indicating genetic heterogeneity.
Area of Science:
- Genetics
- Developmental Biology
- Medical Genetics
Background:
- Heart-hand syndromes are congenital conditions affecting both the heart and limbs.
- Holt-Oram syndrome, a primary example, features cardiac septal defects and radial ray deformities.
- The genetic basis for Holt-Oram syndrome was previously localized to chromosome 12 long arm.
Purpose of the Study:
- To investigate the genetic basis of Holt-Oram syndrome in additional families.
- To determine if related heart-hand syndromes share the same genetic locus.
- To clarify the genetic heterogeneity of heart-hand syndromes.
Main Methods:
- Clinical evaluations and genetic linkage analyses were conducted.
- Studies included five families with Holt-Oram syndrome.
- One family with heart-hand syndrome type III and one with familial atrial septal defect and conduction disease were also analyzed.
Main Results:
- Holt-Oram syndrome in all studied families was mapped to chromosome 12q2 with high statistical significance.
- Heart-hand syndrome type III did not map to chromosome 12q2.
- Familial atrial septal defect with atrioventricular block also did not map to chromosome 12q2.
Conclusions:
- Heart-hand syndromes represent a genetically heterogeneous group of disorders.
- Conditions clinically resembling Holt-Oram syndrome can result from distinct genetic mutations.
- This highlights the importance of precise genetic diagnosis for related congenital anomalies.
Background:
Heart-hand syndromes compose a class of combined congenital cardiac and limb deformities. The proto-typical heart-hand disorder is Holt-Oram syndrome, which is characterized by cardiac septation defects and radial ray limb deformity. We have recently mapped the Holt-Oram syndrome gene defect to the long arm of human chromosome 12 in two families. The role of this disease locus in the pathogenesis of related conditions such as heart-hand syndrome type III (cardiac conduction disease accompanied by skeletal malformations) or familial atrial septal defects is unknown.
Methods And Results:
Clinical evaluations and genetic linkage analyses were performed in five additional kindreds with Holt-Oram syndrome and also in one kindred with heart-hand syndrome type III and one kindred with familial atrial septal defect and conduction disease. Holt-Oram syndrome in all five kindreds mapped to chromosome 12q2. These studies and previous data provide odds of greater than 10(25):1 that the Holt-Oram syndrome disease gene is at chromosome 12q2. In contrast, neither the phenotypically similar disorder heart-hand syndrome type III nor the locus responsible for a familial atrial septal defect with atrioventricular block maps to chromosome 12q2.
Conclusions:
We demonstrate that heart-hand syndromes are genetically heterogeneous. Conditions that clinically appear to be partial phenocopies of Holt-Oram syndrome arise from distinct disease genes.
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