Key result
PROSIT240 missense mutations appear in ~3% of isolated dextro-looped TGA patients but not in controls.
Why the study?
Very little is known about the pathogenesis of transposition of the great arteries (TGA), a common congenital heart defect.
Observational (n=97)
Absolute Event Rate: 3.1% vs 0%
The novel gene PROSIT240 (THRAP2) is implicated in the pathogenesis of transposition of the great arteries, suggesting its involvement in early heart and brain development.
May implicate a novel locus in TGA; hypothesis-generating and requires replication before clinical translation.
BACKGROUND: Congenital heart disease represents the most common severe birth defect, affecting 0.7% to 1% of all neonates, among whom 5% to 7% display transposition of the great arteries (TGA). TGA represents a septation defect of the common outflow tract of the heart, manifesting around the fifth week during embryonic development. Despite its high prevalence, very little is known about the pathogenesis of this disease. METHODS AND RESULTS: Using a positional cloning approach, we isolated a novel gene, PROSIT240 (also termed THRAP2), that is interrupted in a patient with a chromosomal translocation and who displays TGA and mental retardation. High expression of PROSIT240 within the heart (aorta) and brain (cerebellum) was well correlated with the malformations observed in the patient and prompted further analyses. PROSIT240 shows significant homology to the nuclear receptor coactivator TRAP240, suggesting it to be a new component of the thyroid hormone receptor-associated protein (TRAP) complex. Interestingly, several TRAP components have been previously shown to be important in early embryonic development in various organisms, making PROSIT240 an excellent candidate gene to be correlated to the patient's phenotype. Subsequent mutational screening of 97 patients with isolated dextro-looped TGA revealed 3 missense mutations in PROSIT240, which were not detected in 400 control chromosomes. CONCLUSIONS: Together, these genetic data suggest that PROSIT240 is involved in early heart and brain development.
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Muncke et al. (2003) conducted an observational in Transposition of the great arteries (TGA) (n=97). PROSIT240 missense mutations vs. Control chromosomes was evaluated on Presence of missense mutations in PROSIT240. Mutational screening revealed 3 missense mutations in the PROSIT240 gene among 97 patients with isolated dextro-looped TGA (3.1%), which were not detected in 400 control chromosomes (0%).
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