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小鼠锁骨发育:野生型和锁骨颅骨发育不全突变小鼠的分析

Mouse clavicular development: analysis of wild-type and cleidocranial dysplasia mutant mice.

作者信息

Huang L F, Fukai N, Selby P B, Olsen B R, Mundlos S

机构信息

Department of Cell Biology, Harvard Medical School, Boston, Massachusetts 02115, USA.

出版信息

Dev Dyn. 1997 Sep;210(1):33-40. doi: 10.1002/(SICI)1097-0177(199709)210:1<33::AID-AJA4>3.0.CO;2-2.

Abstract

Cleidocranial dysplasia (CCD) is an autosomal dominant disease characterized by hypoplasia or aplasia of clavicles, open fontanelles, and other skeletal anomalies. A mouse mutant, shown by clinical and radiographic analysis to be strikingly similar to the human disorder and designated Ccd, was used as a model for the human disorder. Since malformation of the clavicle is the hallmark of CCD, we studied clavicular development in wild-type and Ccd mice. Histology and in situ hybridization experiments were performed to compare the temporal and spatial expression of several genes in wild-type and Ccd mutant mouse embryos. Bone and cartilage specific markers--type I, II, and X collagens, Sox9, aggrecan, and osteopontin were used as probes. The analyses covered the development of the clavicle from the initial mesenchymal condensation at embryonic day 13 (E13) to the late mineralization stage at embryonic day 15.5. At day 13.5, cells in the center of the condensation differentiate into characteristic precursor cells that were not observed in other bone anlagen. In the medial part of the anlage these cells express markers of the early cartilage lineage (type II collagen and Sox9), whereas cells of the lateral part express markers of the osteoblast lineage (type I collagen). With further development the medial cells differentiate into chondrocytes and start to express chondrocyte-specific markers such as aggrecan. Cells of the lateral part differentiate into osteoblasts as indicated by the production of bone matrix and the expression of osteopontin. At day 14.5 a regular growth plate has developed between the two parts where type X collagen expression can be demonstrated in hypertrophic chondrocytes. The data indicate that the medial part of the clavicle develops by endochondral bone formation while the lateral part ossifies as a membranous bone. The clavicle of Ccd mice showed a smaller band of mesenchymal cell condensation than in wild-type mice. Cells of the condensation failed to express type I and type II collagen at E13.5. In the lateral part of the clavicle type I collagen expression was not detected until E14.5 and osteopontin expression only appeared at E15.5. At E15.5, a small ossification center appears in the lateral part which is, in contrast to the wild-type clavicular bone, solid and without primary spongiosa as well as bone marrow. In the medial portion, type II collagen expression and endochondral ossification never occurs in Ccd mice; this portion of the clavicle is therefore missing in Ccd.

摘要

锁骨颅骨发育不全(CCD)是一种常染色体显性疾病,其特征为锁骨发育不全或缺失、囟门开放以及其他骨骼异常。一只经临床和影像学分析显示与人类疾病极为相似并命名为Ccd的小鼠突变体被用作人类疾病的模型。由于锁骨畸形是CCD的标志,我们研究了野生型和Ccd小鼠的锁骨发育情况。进行了组织学和原位杂交实验,以比较几种基因在野生型和Ccd突变小鼠胚胎中的时空表达。骨和软骨特异性标志物——I型、II型和X型胶原蛋白、Sox9、聚集蛋白聚糖和骨桥蛋白被用作探针。分析涵盖了从胚胎第13天(E13)初始间充质凝聚到胚胎第15.5天晚期矿化阶段的锁骨发育过程。在第13.5天,凝聚中心的细胞分化为特征性前体细胞,这在其他骨原基中未观察到。在原基的内侧部分,这些细胞表达早期软骨谱系的标志物(II型胶原蛋白和Sox9),而外侧部分的细胞表达成骨细胞谱系的标志物(I型胶原蛋白)。随着进一步发育,内侧细胞分化为软骨细胞并开始表达软骨细胞特异性标志物,如聚集蛋白聚糖。外侧部分的细胞分化为成骨细胞,这可通过骨基质的产生和骨桥蛋白的表达来表明。在第14.5天,在两部分之间形成了一个规则的生长板,在肥大软骨细胞中可显示X型胶原蛋白的表达。数据表明,锁骨的内侧部分通过软骨内成骨发育,而外侧部分则作为膜性骨骨化。Ccd小鼠的锁骨间充质细胞凝聚带比野生型小鼠小。在E13.5时,凝聚细胞未能表达I型和II型胶原蛋白。在锁骨外侧部分,直到E14.5才检测到I型胶原蛋白的表达,而骨桥蛋白的表达仅在E15.5出现。在E15.5时,外侧部分出现一个小的骨化中心,与野生型锁骨骨不同,它是实心的,没有初级海绵骨和骨髓。在中间部分,Ccd小鼠中II型胶原蛋白的表达和软骨内成骨从未发生;因此,Ccd小鼠的锁骨这一部分缺失。

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