首页> 美国卫生研究院文献>American Journal of Human Genetics >A Recessive Skeletal Dysplasia SEMD Aggrecan Type Results from a Missense Mutation Affecting the C-Type Lectin Domain of Aggrecan
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A Recessive Skeletal Dysplasia SEMD Aggrecan Type Results from a Missense Mutation Affecting the C-Type Lectin Domain of Aggrecan

机译:隐性骨骼发育不良SEMD Aggrecan类型是由影响Aggrecan C型凝集素结构域的错义突变导致的

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摘要

Analysis of a nuclear family with three affected offspring identified an autosomal-recessive form of spondyloepimetaphyseal dysplasia characterized by severe short stature and a unique constellation of radiographic findings. Homozygosity for a haplotype that was identical by descent between two of the affected individuals identified a locus for the disease gene within a 17.4 Mb interval on chromosome 15, a region containing 296 genes. These genes were assessed and ranked by cartilage selectivity with whole-genome microarray data, revealing only two genes, encoding aggrecan and chondroitin sulfate proteoglycan 4, that were selectively expressed in cartilage. Sequence analysis of aggrecan complementary DNA from an affected individual revealed homozygosity for a missense mutation (c.6799G → A) that predicts a p.D2267N amino acid substitution in the C-type lectin domain within the G3 domain of aggrecan. The D2267 residue is predicted to coordinate binding of a calcium ion, which influences the conformational binding loops of the C-type lectin domain that mediate interactions with tenascins and other extracellular-matrix proteins. Expression of the normal and mutant G3 domains in mammalian cells showed that the mutation created a functional N-glycosylation site but did not adversely affect protein trafficking and secretion. Surface-plasmon-resonance studies showed that the mutation influenced the binding and kinetics of the interactions between the aggrecan G3 domain and tenascin-C. These findings identify an autosomal-recessive skeletal dysplasia and a significant role for the aggrecan C-type lectin domain in regulating endochondral ossification and, thereby, height.
机译:对一个有三个受影响后代的核心家庭进行的分析确定了一种常染色体隐性形式的脊椎干met端发育异常,其特征是身材严重矮小和影像学检查结果独特。通过降低两个受影响个体之间的血统而获得的单倍型的纯合性,在15号染色体的17.4 Mb间隔内确定了该疾病基因的基因座,该区域包含296个基因。用全基因组微阵列数据对这些基因进行评估,并根据软骨的选择性进行排名,仅揭示了编码在软骨中选择性表达的两个蛋白,分别编码聚集蛋白聚糖和硫酸软骨素蛋白聚糖4。来自受影响个体的聚集蛋白聚糖互补DNA的序列分析揭示了错义突变的纯合性(c.6799G→A),该突变预测了聚集蛋白聚糖G3结构域内C型凝集素结构域中的p.D2267N氨基酸取代。预计D2267残基会协调钙离子的结合,从而影响C型凝集素结构域的构象结合环,该环介导与肌腱蛋白和其他细胞外基质蛋白相互作用。正常和突变G3域在哺乳动物细胞中的表达表明,该突变产生了功能性N-糖基化位点,但对蛋白质的运输和分泌没有不利影响。表面等离振子共振研究表明,突变影响了聚集蛋白聚糖G3结构域和腱生蛋白C相互作用的结合和动力学。这些发现确定了常染色体隐性骨发育异常,并且聚集蛋白聚糖C型凝集素结构域在调节软骨内骨化以及由此调节身高中起重要作用。

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