A single mutation that results in an Asp to His substitution and partial exon skipping in a family with congenital contractural arachnodactyly

被引:0
|
作者
Darcie Babcock
Cheryll Gasner
Uta Francke
C. Maslen
机构
[1] Department of Medicine,
[2] L465,undefined
[3] Oregon Health Sciences University,undefined
[4] 3181 SW Sam Jackson Park Road,undefined
[5] Portland,undefined
[6] OR 97201-3098,undefined
[7] USA Tel.: +1 503 494 2011,undefined
[8] Fax: +1 503 494 6986,undefined
[9] Department of Molecular and Medical Genetics,undefined
[10] Oregon Health Sciences University,undefined
[11] Portland,undefined
[12] OR 97201,undefined
[13] USA,undefined
[14] University Congenital Heart Research Center,undefined
[15] Oregon Health Sciences University,undefined
[16] Portland,undefined
[17] OR 97201,undefined
[18] USA,undefined
[19] Center for Marfan Syndrome & Related Connective Tissue Disorders,undefined
[20] Stanford University Medical Center,undefined
[21] Stanford,undefined
[22] CA 94305,undefined
[23] USA,undefined
[24] Howard Hughes Medical Institute,undefined
[25] Stanford University Medical Center,undefined
[26] Stanford,undefined
[27] CA 94305,undefined
[28] USA,undefined
[29] Department of Genetics,undefined
[30] Stanford University Medical Center,undefined
[31] Stanford,undefined
[32] California 94305,undefined
[33] USA,undefined
来源
Human Genetics | 1998年 / 103卷
关键词
Dermal Fibroblast; Autosomal Dominant Disorder; Single Point Mutation; Donor Splice Site; Allele Expression;
D O I
暂无
中图分类号
学科分类号
摘要
Congenital contractural arachnodactyly (CCA) is an autosomal dominant disorder of connective tissue and is characterized by multiple congenital contractures, arachnodactyly, and external ear malformations. Recent investigations indicate that mutations in the fibrillin-2 gene (FBN2) cause CCA. Here, we report a G→C transversion at nucleotide 3340 (G3340C) of FBN2 in a family with phenotypic characteristics of CCA. The G3340C mutation predicts the substitution of histidine for aspartic acid at amino acid residue 1114 (Asp1114His) and also alters the 5’ donor splice site consensus sequence of exon 25. Reverse transcription/polymerase chain reaction and DNA sequence analyses demonstrate that this missense mutation also causes low level in-frame mis-splicing of exon 25 (del exon 25). Consequently, this single point mutation produces a heterogeneous population of mutant fibrillin-2 molecules in a single individual. Despite the complex manifestation of the mutation, it is associated with a relatively mild phenotype. Analysis of FBN2 allele expression in cultured dermal fibroblasts derived from the proband has shown that the mutant allele is preferentially expressed, contributing about 84% of the total transcript. This indicates that an overabundance of mutant transcript does not necessarily correlate with a more severe CCA phenotype.
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页码:22 / 28
页数:6
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