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PMID: 7789952 Published · ppublish English

Recurrence of osteogenesis imperfecta because of paternal mosaicism: Gly862-->Ser substitution in a type I collagen gene (COL1A1).

Human genetics ·Vol. 95 ·No. 6 ·1995-07-26

Namikawa C, Suzumori K, Fukushima Y, Sasaki M, Hata A

Abstract

We determined that two siblings with type III osteogenesis imperfecta (OI) had the same single base substitution that converted the codon for glycine (Gly) 862 to a codon for serine (Ser) in exon 44 of the alpha 1 chain of the type I (alpha 1(I)) collagen gene (COL1A1). The mutation was also detected in various paternal tissues; the mutant allele accounted for approximately 11% of the COL1A1 alleles in blood, 24% of those in fibroblasts, and 43% of those in sperm determined by allele-specific colony hybridization using amplified genomic sequences. These findings demonstrate that germ-line mosaicism in the phenotypically normal father is responsible for the recurrence. There is a cluster of serine substitutions for Gly (Gly832, Gly844 and Gly901) which is associated with nonlethal phenotypes and which is located between two lethal clusters. In the cases studied here, a Gly862-->Ser mutation was identified that is located inside the nonlethal cluster.

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Article Info
Journal
Human genetics
Abbr.
Hum Genet
Published
1995-07-26
Indexed
1995-07-26
Updated
2004-11-17
Language
English
Country/Region
Germany
NLM ID
7613873
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