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J Pediatr ; 155(6): 854-859.e1, 2009 Dec.
Article in English | MEDLINE | ID: mdl-19647838

ABSTRACT

OBJECTIVE: To characterize inheritance of homozygous, rare, recessive loss-of-function mutations in surfactant protein-B (SFTPB) or ATP binding cassette, subfamily A, member 3 (ABCA3) genes in newborns with lethal respiratory failure. STUDY DESIGN: We resequenced genes from parents whose infants were homozygous for mutations in SFTPB or ABCA3. For infants with only 1 heterozygous parent, we performed microsatellite analysis for chromosomes 2 (SFTPB) and 16 (ABCA3). RESULTS: We identified 1 infant homozygous for the g.1549C > GAA mutation (121ins2) in SFTPB for whom only the mother was heterozygous and 3 infants homozygous for mutations in ABCA3 (p.K914R, p.P147L, and c.806_7insGCT) for whom only the fathers were heterozygous. For the SP-B-deficient infant, microsatellite markers confirmed maternal heterodisomy with segmental isodisomy. Microsatellite analysis confirmed paternal isodisomy for the 3 ABCA3-deficient infants. Two ABCA3-deficient infants underwent lung transplantation at 3 and 5 months of age, respectively, and 2 infants died. None exhibited any nonpulmonary phenotype. CONCLUSIONS: Uniparental disomy should be suspected in infants with rare homozygous mutations in SFTPB or ABCA3. Confirmation of parental carrier status is important to provide recurrence risk and to monitor expression of other phenotypes that may emerge through reduction to homozygosity of recessive alleles.


Subject(s)
ATP-Binding Cassette Transporters/genetics , Mutation/genetics , Pulmonary Surfactant-Associated Protein B/deficiency , Pulmonary Surfactant-Associated Protein B/genetics , Uniparental Disomy/diagnosis , Uniparental Disomy/genetics , Chromosomes, Human, Pair 16/genetics , Chromosomes, Human, Pair 2/genetics , Fatal Outcome , Female , Humans , Infant , Infant, Newborn , Male
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