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成纤维细胞生长因子受体3酪氨酸激酶结构域的复发性突变导致软骨发育不全。

A recurrent mutation in the tyrosine kinase domain of fibroblast growth factor receptor 3 causes hypochondroplasia.

作者信息

Bellus G A, McIntosh I, Smith E A, Aylsworth A S, Kaitila I, Horton W A, Greenhaw G A, Hecht J T, Francomano C A

机构信息

Center for Medical Genetics, Johns Hopkins University School of Medicine, Baltimore, Maryland 21287, USA.

出版信息

Nat Genet. 1995 Jul;10(3):357-9. doi: 10.1038/ng0795-357.

Abstract

Hypochondroplasia (MIM 146000) is an autosomal dominant skeletal dysplasia with skeletal features similar to but milder than those seen in achondroplasia. Within the past year, the achondroplasia locus has been mapped to 4p 16.3 (refs 5-7) and mutations in the fibroblast growth factor receptor 3 (FGFR3) gene have been identified in patients with the disorder. More than 95% of 242 cases reported so far are accounted for by a single Gly380Arg mutation. McKusick et al. proposed that achondroplasia and hypochondroplasia are allelic based on the similarities in phenotype between the two disorders and the identification of a severely dwarfed individual whose father had achondroplasia and whose mother had hypochondroplasia. There is also genetic linkage evidence that hypochondroplasia and achondroplasia map to the same locus. We therefore began a systematic screening of FGFR3 to detect mutations in patients with hypochondroplasia. We now report a single FGFR3 mutation found in 8 out of 14 unrelated patients with hypochondroplasia. This mutation causes a C to A transversion at nucleotide 1620, resulting in an Asn540Lys substitution in the proximal tyrosine kinase domain.

摘要

软骨发育不全(MIM 146000)是一种常染色体显性遗传性骨骼发育不良疾病,其骨骼特征与软骨发育不全相似,但症状较轻。在过去一年中,软骨发育不全基因位点已被定位到4p 16.3(参考文献5 - 7),并且在患有该疾病的患者中已鉴定出成纤维细胞生长因子受体3(FGFR3)基因突变。在迄今报告的242例病例中,超过95%是由单一的Gly380Arg突变引起的。麦库西克等人基于这两种疾病在表型上的相似性以及对一名严重侏儒症患者的鉴定(其父亲患有软骨发育不全,母亲患有软骨发育不全),提出软骨发育不全和软骨发育不全是等位基因。也有基因连锁证据表明软骨发育不全和软骨发育不全定位到同一基因位点。因此,我们开始对FGFR3进行系统筛查,以检测软骨发育不全患者的突变情况。我们现在报告在14例不相关的软骨发育不全患者中有8例发现了单一的FGFR3突变。该突变导致核苷酸1620处的C到A颠换,在近端酪氨酸激酶结构域中产生Asn540Lys替代。

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