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由TNFRSF11B截短突变引起的青少年佩吉特病的一种中间形式。

An intermediate form of juvenile Paget's disease caused by a truncating TNFRSF11B mutation.

作者信息

Janssens K, de Vernejoul M-C, de Freitas F, Vanhoenacker F, Van Hul W

机构信息

Department of Medical Genetics, University of Antwerp, CDE, T6, Universiteitsplein 1, 2610 Antwerp, Belgium.

出版信息

Bone. 2005 Mar;36(3):542-8. doi: 10.1016/j.bone.2004.12.004.

Abstract

Juvenile Paget's disease (JPD) is a rare condition with an autosomal recessive mode of inheritance. Typically presenting in infancy or early childhood, the disorder is characterized by a generalized widening of the long bones and thickening of the skull combined with sustained elevation of serum alkaline phosphatase levels. The extremely rapid bone turnover results in osteopenia, fractures, and progressive skeletal deformity. In 2002, mutations in TNFRSF11B, the gene encoding osteoprotegerin, were described as underlying JPD. We evaluated a patient with JPD at the clinical, biochemical, radiological, and molecular level. Mutation analysis of TNFRSF11B revealed a homozygous insertion/deletion in exon 5, predicted to result in truncation of the protein at amino acid 325. The residual activity of the mutated protein product was investigated by Western blotting and ELISA upon transient overexpression. Absence of the C-terminal domain abolished homodimerization and was shown to lead to a decreased capacity of the mutant protein to bind its ligand RANKL. We conclude that truncation of the C-terminal part of osteoprotegerin negatively affects functional activity. As a consequence, osteoclast formation and function are up-regulated, causing the increased bone turnover seen in this patient.

摘要

青少年佩吉特病(JPD)是一种罕见的常染色体隐性遗传疾病。该疾病通常在婴儿期或幼儿期发病,其特征为长骨普遍增宽、颅骨增厚,同时血清碱性磷酸酶水平持续升高。骨转换极快会导致骨质减少、骨折和进行性骨骼畸形。2002年,编码骨保护素的基因TNFRSF11B中的突变被描述为JPD的潜在病因。我们在临床、生化、放射学和分子水平对一名JPD患者进行了评估。TNFRSF11B的突变分析显示外显子5存在纯合插入/缺失,预计会导致蛋白质在第325位氨基酸处截断。通过瞬时过表达后进行蛋白质印迹和酶联免疫吸附测定来研究突变蛋白产物的残余活性。C末端结构域的缺失消除了同源二聚化,并显示导致突变蛋白结合其配体RANKL的能力下降。我们得出结论,骨保护素C末端部分的截断对功能活性产生负面影响。因此,破骨细胞的形成和功能上调,导致该患者出现骨转换增加的情况。

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