Yi S E, Daluiski A, Pederson R, Rosen V, Lyons K M
Department of Orthopaedic Surgery, University of California, Los Angeles, CA 90095, USA.
Development. 2000 Feb;127(3):621-30. doi: 10.1242/dev.127.3.621.
Mice carrying a targeted disruption of BmprIB were generated by homologous recombination in embryonic stem cells. BmprIB(-/-) mice are viable and, in spite of the widespread expression of BMPRIB throughout the developing skeleton, exhibit defects that are largely restricted to the appendicular skeleton. Using molecular markers, we show that the initial formation of the digital rays occurs normally in null mutants, but proliferation of prechondrogenic cells and chondrocyte differentiation in the phalangeal region are markedly reduced. Our results suggest that BMPRIB-mediated signaling is required for cell proliferation after commitment to the chondrogenic lineage. Analyses of BmprIB and Gdf5 single mutants, as well as BmprIB; Gdf5 double mutants suggests that GDF5 is a ligand for BMPRIB in vivo. BmprIB; Bmp7 double mutants were constructed in order to examine whether BMPRIB has overlapping functions with other type I BMP receptors. BmprIB; Bmp7 double mutants exhibit severe appendicular skeletal defects, suggesting that BMPRIB and BMP7 act in distinct, but overlapping pathways. These results also demonstrate that in the absence of BMPRIB, BMP7 plays an essential role in appendicular skeletal development. Therefore, rather than having a unique role, BMPRIB has broadly overlapping functions with other BMP receptors during skeletal development.
通过胚胎干细胞中的同源重组产生了携带BmprIB靶向破坏的小鼠。BmprIB(-/-)小鼠能够存活,尽管BMPRIB在整个发育中的骨骼中广泛表达,但其缺陷主要局限于附肢骨骼。使用分子标记,我们发现指骨射线的初始形成在无效突变体中正常发生,但指骨区域的软骨前体细胞增殖和软骨细胞分化明显减少。我们的结果表明,BMPRIB介导的信号传导是软骨形成谱系确定后细胞增殖所必需的。对BmprIB和Gdf5单突变体以及BmprIB; Gdf5双突变体的分析表明,GDF5在体内是BMPRIB的配体。构建BmprIB; Bmp7双突变体以检查BMPRIB是否与其他I型BMP受体具有重叠功能。BmprIB; Bmp7双突变体表现出严重的附肢骨骼缺陷,表明BMPRIB和BMP7在不同但重叠的途径中起作用。这些结果还表明,在没有BMPRIB的情况下,BMP7在附肢骨骼发育中起重要作用。因此,BMPRIB在骨骼发育过程中与其他BMP受体具有广泛的重叠功能,而不是具有独特的作用。