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Identification of a frameshift mutation in osterix in a patient with recessive osteogenesis imperfecta

机译:隐性成骨不全症患者osterix移码突变的鉴定

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摘要

Osteogenesis imperfecta, or "brittle bone disease", is a type collagen-related condition associated with osteoporosis and increased risk of bone fractures. Using a combination of homozygosity mapping and candidate gene approach, we have identified a homozygous single base pair deletion (c.1052delA) in SP7/Osterix (OSX) in an Egyptian child with recessive osteogenesis imperfecta. The clinical findings from this patient include recurrent fractures, mild bone deformities, delayed tooth eruption, normal hearing, and white sclera. OSX encodes a transcription factor containing three Cys2-His2 zinc-finger DNA-binding domains at its C terminus, which, in mice, has been shown to be essential for bone formation. The frameshift caused by the c.1052delA deletion removes the last 81 amino acids of the protein, including the third zinc-finger motif. This finding adds another locus to the spectrum of genes associated with osteogenesis imperfecta and reveals that SP7/OSX also plays a key role in human bone development.
机译:成骨不全症或“脆性骨病”是与骨质疏松症和骨折风险增加相关的与胶原相关的疾病。使用纯合性作图和候选基因方法的组合,我们已经确定了埃及隐性成骨不全儿童的SP7 / Osterix(OSX)中纯合单碱基对缺失(c.1052delA)。该患者的临床发现包括复发性骨折,轻度骨畸形,牙齿萌发延迟,听力正常和巩膜变白。 OSX编码的转录因子在其C末端包含三个Cys2-His2锌指DNA结合结构域,在小鼠中,这已显示出对骨形成至关重要。由c.1052delA缺失引起的移码删除了蛋白质的最后81个氨基酸,包括第三个锌指基序。这一发现为与成骨不全症相关的基因谱添加了另一个基因座,并揭示了SP7 / OSX在人类骨骼发育中也起着关键作用。

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