Department of Cell Biology, Unit of Basic Medical Sciences, Nagasaki University Graduate School of Biomedical Sciences, 1-7-1 Sakamoto, Nagasaki 852-8588, Japan.
J Bone Miner Metab. 2011 May;29(3):291-9. doi: 10.1007/s00774-010-0222-z. Epub 2010 Oct 2.
Runx2 plays important roles in the regulation of chondrocyte differentiation and proliferation; however, the Runx2 target molecules still remain to be investigated. We searched the genes upregulated by the introduction of Runx2 into Runx2(-/-) chondrocytes using microarray and found that Tcf7 is upregulated by Runx2. Thus, we examined the functions of Runx2 in the regulation of the Tcf/Lef family of transcription factors. Runx2 induced Tcf7 and Lef1 strongly, but Tcf7l1 and Tcf7l2 only slightly in Runx2(-/-) chondrocytes; the expressions of Tcf7 and Tcf7l2 were reduced in Runx2(-/-) cartilaginous skeletons and calvaria, and Tcf7 showed a similar expression pattern to Runx2. In reporter assays, Runx2 mildly activated the 8.6 and 1.8 kb Tcf7 promoter constructs. The reporter assays using the deletion constructs of the 1.8-kb fragment showed that the 0.3-kb promoter region is responsible for the Runx2-dependent transcriptional activation. To investigate the function of Tcf7 in skeletal development, we generated dominant-negative (dn) Tcf7 transgenic mice using the Col2a1 promoter. Dn-Tcf7 transgenic embryos showed dwarfism, and mineralization was retarded in limbs, ribs, and vertebrae in a manner dependent on the expression levels of the transgene. In situ hybridization analysis showed that endochondral ossification is retarded in dn-Tcf7 transgenic embryos due to the decelerated chondrocyte maturation. Further, BrdU labeling showed a reduction in chondrocyte proliferation in the proliferating layer of the growth plate in dn-Tcf7 transgenic embryos. These findings indicate that Runx2 regulates chondrocyte maturation and proliferation at least partly through the induction of Tcf7.
Runx2 在调控软骨细胞分化和增殖中发挥重要作用;然而,Runx2 的靶分子仍有待研究。我们使用微阵列搜索了通过引入 Runx2 到 Runx2(-/-)软骨细胞中转录上调的基因,发现 Tcf7 被 Runx2 上调。因此,我们研究了 Runx2 在调节 Tcf/Lef 家族转录因子中的功能。Runx2 强烈诱导 Runx2(-/-)软骨细胞中的 Tcf7 和 Lef1,但仅轻度诱导 Tcf7l1 和 Tcf7l2;Runx2(-/-)软骨骨骼和颅骨中的 Tcf7 和 Tcf7l2 表达减少,并且 Tcf7 的表达模式与 Runx2 相似。在报告基因实验中,Runx2 轻度激活了 8.6 和 1.8kb 的 Tcf7 启动子构建体。使用 1.8kb 片段缺失构建体的报告基因实验表明,0.3kb 的启动子区域负责 Runx2 依赖性转录激活。为了研究 Tcf7 在骨骼发育中的功能,我们使用 Col2a1 启动子生成了显性负(dn)Tcf7 转基因小鼠。dn-Tcf7 转基因胚胎表现出矮小症,并且四肢、肋骨和椎骨的矿化延迟,这种延迟方式依赖于转基因的表达水平。原位杂交分析表明,dn-Tcf7 转基因胚胎中的软骨内骨化延迟是由于软骨细胞成熟的减速。此外,BrdU 标记显示 dn-Tcf7 转基因胚胎生长板增殖层中的软骨细胞增殖减少。这些发现表明,Runx2 通过诱导 Tcf7 来调节软骨细胞的成熟和增殖。