Osteogenesis imperfecta (OI) is a heterogeneous disorder of type I collagen of which OI type I, an autosomal dominant condition, is the mildest and most common form. Affected individuals have blue sclerae, normal stature, bone fragility without significant deformity and osteopenia. Fibroblasts from most affected individuals produce about half the expected amount of structurally normal type I collagen as a result of decreased synthesis of one of its constituent chains, pro alpha 1(I), but the nature of the mutations which result in OI type I are unknown. We describe a three generation family with OI type I in which all affected members have one normal COL1A1 allele and another from which the intragenic Eco RI restriction site near the 3' end of the gene is missing. Amplification by polymerase chain reaction and sequence determination of the normal allele and of the mutant allele in the domain that normally contains the Eco RI site demonstrated a 5-bp deletion from the mutant allele. The deletion changes the translational reading-frame beginning at the Eco RI site and predicts the synthesis of a pro alpha 1(I) chain that extends 84 amino acids beyond the normal termination. Although the mutant pro alpha 1(I) chain is synthesized in an in vitro translation system, we are unable to detect its presence in intact cells, suggesting that it is unstable and rapidly destroyed in one of the cell's degradative pathways. Our analysis of individuals with OI type I from 20 families indicates that this is a unique mutation and suggests that the phenotype can result from multiple mechanisms that decrease the synthesis of normal type I procollagen molecules, including those that alter protein stability.
M C Willing, D H Cohn, P H Byers
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Cellular and Molecular Biology of Bone
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Molecular nosology of heritable disorders of connective tissue
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The Journal of biological chemistry | 1992 |
A tripeptide deletion in the triple-helical domain of the pro alpha 1(I) chain of type I procollagen in a patient with lethal osteogenesis imperfecta does not alter cleavage of the molecule by N-proteinase
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The Journal of biological chemistry | 1992 |
Ehlers Danlos syndrome type VIIB. Incomplete cleavage of abnormal type I procollagen by N-proteinase in vitro results in the formation of copolymers of collagen and partially cleaved pNcollagen that are near circular in cross-section
RB Watson, GA Wallis, DF Holmes, D Viljoen, PH Byers, KE Kadler |
The Journal of biological chemistry | 1992 |
Stop codon in the procollagen II gene (COL2A1) in a family with the Stickler syndrome (arthro-ophthalmopathy)
NN Ahmad, L Ala-Kokko, RG Knowlton, SA Jimenez, EJ Weaver, JI Maguire, W Tasman, DJ Prockop |
Proceedings of the National Academy of Sciences | 1991 |
The genetic toxicology of acridines
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Mutation Research/Reviews in Genetic Toxicology | 1991 |
Cysteine in the triple helical domain of the pro?2(I) chain of type-I collagen in nonlethal forms of osteogenesis imperfecta
DH Cohn, PH Byers |
Human Genetics | 1991 |
Osteogenesis imperfecta due to recurrent point mutations at CpG dinucleotides in the COL1A1 gene of type I collagen
CJ Pruchno, DH Cohn, GA Wallis, MC Willing, BJ Starman, X Zhang, PH Byers |
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Osteogenesis imperfecta: translation of mutation to phenotype
PH Byers, GA Wallis, MC Willing |
Journal of medical genetics | 1991 |
A splice site mutation of the beta-spectrin gene causing exon skipping in hereditary elliptocytosis associated with a truncated beta-spectrin chain
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The Journal of biological chemistry | 1991 |
The effects of different cysteine for glycine substitutions within alpha 2(I) chains. Evidence of distinct structural domains within the type I collagen triple helix
RJ Wenstrup, AW Shrago-Howe, LW Lever, CL Phillips, PH Byers, DH Cohn |
The Journal of biological chemistry | 1991 |
A 9-base pair deletion in COL1A1 in a lethal variant of osteogenesis imperfecta
JR Hawkins, A Superti-Furga, B Steinmann, R Dalgleish |
The Journal of biological chemistry | 1991 |
Gene deletions causing human genetic disease: mechanisms of mutagenesis and the role of the local DNA sequence environment
M Krawczak, DN Cooper |
Human Genetics | 1991 |
Brittle bones - fragile molecules: disorders of collagen gene structure and expression
PH Byers |
Trends in Genetics | 1990 |
Distinct biochemical phenotypes predict clinical severity in nonlethal variants of osteogenesis imperfecta
RJ Wenstrup, MC Willing, BJ Starman, PH Byers |
The American Journal of Human Genetics | 1990 |
Variable expression of osteogenesis imperfecta in a nuclear family is explained by somatic mosaicism for a lethal point mutation in the alpha 1(I) gene (COL1A1) of type I collagen in a parent
GA Wallis, BJ Starman, AB Zinn, PH Byers |
The American Journal of Human Genetics | 1990 |
Transgenic mouse model of the mild dominant form of osteogenesis imperfecta
J Bonadio, TL Saunders, E Tsai, SA Goldstein, J Morris-Wiman, L Brinkley, DF Dolan, RA Altschuler, JE Hawkins, JF Bateman |
Proceedings of the National Academy of Sciences | 1990 |
Tandem duplication within a type II collagen gene (COL2A1) exon in an individual with spondyloepiphyseal dysplasia
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Proceedings of the National Academy of Sciences | 1990 |
Extracellular Matrix Genes
LJ Sandell, CD Boyd |
Extracellular Matrix Genes | 1990 |
Clinical Screening for Collagen Defects in Connective Tissue Diseases
DH Cohn, PH Byers |
Clinics in Perinatology | 1990 |
Substitution of arginine for glycine at position 847 in the triple-helical domain of the alpha 1 (I) chain of type I collagen produces lethal osteogenesis imperfecta. Molecules that contain one or two abnormal chains differ in stability and secretion
GA Wallis, BJ Starman, MF Schwartz, PH Byers |
The Journal of biological chemistry | 1990 |
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Nucleic Acids Research | 1990 |
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