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一种纯合致病变异的错义突变拓宽了 CREB3L1 相关成骨不全症的表型和突变谱。

A homozygous pathogenic missense variant broadens the phenotypic and mutational spectrum of CREB3L1-related osteogenesis imperfecta.

机构信息

Center for Medical Genetics Ghent, Ghent University Hospital, Department of Biomolecular Medicine, Ghent, Belgium.

KOÇUniversity School of Medicine (KUSoM) Medical Genetics Department, Topkapi Zeytinburnu, Istanbul, Turkey.

出版信息

Hum Mol Genet. 2019 Jun 1;28(11):1801-1809. doi: 10.1093/hmg/ddz017.

Abstract

The cyclic adenosine monophosphate responsive element binding protein 3-like 1 (CREB3L1) gene codes for the endoplasmic reticulum stress transducer old astrocyte specifically induced substance (OASIS), which has an important role in osteoblast differentiation during bone development. Deficiency of OASIS is linked to a severe form of autosomal recessive osteogenesis imperfecta (OI), but only few patients have been reported. We identified the first homozygous pathogenic missense variant [p.(Ala304Val)] in a patient with lethal OI, which is located within the highly conserved basic leucine zipper domain, four amino acids upstream of the DNA binding domain. In vitro structural modeling and luciferase assays demonstrate that this missense variant affects a critical residue in this functional domain, thereby decreasing the type I collagen transcriptional binding ability. In addition, overexpression of the mutant OASIS protein leads to decreased transcription of the SEC23A and SEC24D genes, which code for components of the coat protein complex type II (COPII), and aberrant OASIS signaling also results in decreased protein levels of SEC24D. Our findings therefore provide additional proof of the potential involvement of the COPII secretory complex in the context of bone-associated disease.

摘要

环磷酸腺苷反应元件结合蛋白 3 样蛋白 1(CREB3L1)基因编码内质网应激传感器老神经胶质细胞特异性诱导物质(OASIS),它在骨发育过程中的成骨细胞分化中具有重要作用。OASIS 的缺乏与一种严重的常染色体隐性遗传性成骨不全症(OI)有关,但只有少数患者被报道过。我们在一名致死性 OI 患者中发现了第一个纯合的致病变异 [p.(Ala304Val)],该变异位于高度保守的碱性亮氨酸拉链结构域内,位于 DNA 结合结构域上游四个氨基酸处。体外结构建模和荧光素酶检测表明,这种错义变异影响了该功能结构域中的一个关键残基,从而降低了 I 型胶原蛋白的转录结合能力。此外,突变型 OASIS 蛋白的过表达导致 SEC23A 和 SEC24D 基因的转录减少,SEC23A 和 SEC24D 基因编码 II 型(COPII)衣壳蛋白复合物的组成部分,异常的 OASIS 信号还导致 SEC24D 蛋白水平降低。因此,我们的发现为 COPII 分泌复合物在与骨骼相关疾病中的潜在作用提供了进一步的证据。

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