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表达D469Delta突变型软骨寡聚基质蛋白(COMP)的转基因小鼠表现出生长板异常和胸骨畸形。

Transgenic mice expressing D469Delta mutated cartilage oligomeric matrix protein (COMP) show growth plate abnormalities and sternal malformations.

作者信息

Schmitz Markus, Niehoff Anja, Miosge Nicolai, Smyth Neil, Paulsson Mats, Zaucke Frank

机构信息

Center for Biochemistry, Medical Faculty, University of Cologne, Joseph-Stelzmann-Str. 52, D-50931 Cologne, Germany.

出版信息

Matrix Biol. 2008 Mar;27(2):67-85. doi: 10.1016/j.matbio.2007.08.001. Epub 2007 Aug 24.

Abstract

In humans, mutations in cartilage oligomeric matrix protein (COMP) cause autosomal dominantly inherited skeletal dysplasias. We have generated transgenic mouse lines to study the role of mutant D469Delta COMP in the pathogenesis of pseudoachondroplasia. Biochemical characterization of cartilage tissue demonstrated that transgenic and endogenous COMP subunits were able to form mixed, pentameric molecules in vivo. Mutant COMP was more difficult to extract than the wildtype protein, suggesting an altered anchorage within the matrix. Although both transgenic wildtype and mutant COMP were detected throughout the growth plate, mutant molecules were restricted to the pericellular matrix while wildtype COMP showed a uniform distribution throughout the extracellular matrix. Mice expressing the mutant transgene showed a slight gender specific growth retardation. In mutant animals, the columnar organization in the growth plate was disturbed, proteoglycans were lost and improperly formed collagen fibrils were observed. In some chondrocytes the endoplasmic reticulum was dilated, most probably due to an impaired secretion of mutant COMP similar to that observed in patients. Later in development, the growth plate was irregularly shaped and prematurely invaded by bony tissue. In addition, a fusion of the third and fourth sternebrae was frequently observed.

摘要

在人类中,软骨寡聚基质蛋白(COMP)的突变会导致常染色体显性遗传的骨骼发育不良。我们已培育出转基因小鼠品系,以研究突变型D469Delta COMP在假性软骨发育不全发病机制中的作用。软骨组织的生化特性表明,转基因COMP亚基和内源性COMP亚基在体内能够形成混合的五聚体分子。与野生型蛋白相比,突变型COMP更难提取,这表明其在基质中的锚定发生了改变。尽管在整个生长板中都检测到了转基因野生型COMP和突变型COMP,但突变型分子局限于细胞周围基质,而野生型COMP在整个细胞外基质中呈均匀分布。表达突变转基因的小鼠表现出轻微的性别特异性生长迟缓。在突变动物中,生长板中的柱状结构受到干扰,蛋白聚糖丢失,观察到胶原纤维形成异常。在一些软骨细胞中,内质网扩张,这很可能是由于突变型COMP的分泌受损,类似于在患者中观察到的情况。在发育后期,生长板形状不规则,骨组织过早侵入。此外,经常观察到第三和第四胸骨节融合。

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