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首页> 外文期刊>Journal of bone and mineral research: the official journal of the American Society for Bone and Mineral Research >Core binding factor beta (Cbfβ) controls the balance of chondrocyte proliferation and differentiation by upregulating Indian hedgehog (Ihh) expression and inhibiting parathyroid hormone-related protein receptor (PPR) expression in postnatal cartilage and bone formation
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Core binding factor beta (Cbfβ) controls the balance of chondrocyte proliferation and differentiation by upregulating Indian hedgehog (Ihh) expression and inhibiting parathyroid hormone-related protein receptor (PPR) expression in postnatal cartilage and bone formation

机译:核心结合因子β(Cbfβ)通过上调印度刺猬(Ihh)表达并抑制产后软骨和骨形成中甲状旁腺激素相关蛋白受体(PPR)的表达来控制软骨细胞增殖和分化的平衡。

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摘要

Core binding factor beta (Cbfβ) is essential for embryonic bone morphogenesis. Yet the mechanisms by which Cbfβ regulates chondrocyte proliferation and differentiation as well as postnatal cartilage and bone formation remain unclear. Hence, using paired-related homeobox transcription factor 1-Cre (Prx1-Cre) mice, mesenchymal stem cell-specific Cbfβ-deficient (Cbfβf/fPrx1-Cre) mice were generated to study the role of Cbfβ in postnatal cartilage and bone development. These mutant mice survived to adulthood but exhibited severe sternum and limb malformations. Sternum ossification was largely delayed in the Cbfβf/fPrx1-Cre mice and the xiphoid process was noncalcified and enlarged. In newborn and 7-day-old Cbfβf/fPrx1-Cre mice, the resting zone was dramatically elongated, the proliferation zone and hypertrophic zone of the growth plates were drastically shortened and disorganized, and trabecular bone formation was reduced. Moreover, in 1-month-old Cbfβf/fPrx1-Cre mice, the growth plates were severely deformed and trabecular bone was almost absent. In addition, Cbfβ deficiency impaired intramembranous bone formation both in vivo and in vitro. Interestingly, although the expression of Indian hedgehog (Ihh) was largely reduced, the expression of parathyroid hormone-related protein (PTHrP) receptor (PPR) was dramatically increased in the Cbfβf/fPrx1-Cre growth plate, indicating that that Cbfβ deficiency disrupted the Ihh-PTHrP negative regulatory loop. Chromatin immunoprecipitation (ChIP) analysis and promoter luciferase assay demonstrated that the Runx/Cbfβ complex binds putative Runx-binding sites of the Ihh promoter regions, and also the Runx/Cbfβ complex directly upregulates Ihh expression at the transcriptional level. Consistently, the expressions of Ihh target genes, including CyclinD1, Ptc, and Pthlh, were downregulated in Cbfβ-deficient chondrocytes. Taken together, our study reveals not only that Cbfβ is essential for chondrocyte proliferation and differentiation for the growth and maintenance of the skeleton in postnatal mice, but also that it functions in upregulating Ihh expression to promoter chondrocyte proliferation and osteoblast differentiation, and inhibiting PPR expression to enhance chondrocyte differentiation.
机译:核心结合因子β(Cbfβ)对于胚胎骨形态发生至关重要。然而,Cbfβ调节软骨细胞增殖和分化以及产后软骨和骨形成的机制仍不清楚。因此,使用配对相关的同源盒转录因子1-Cre(Prx1-Cre)小鼠,生成了间充质干细胞特异性Cbfβ缺陷型(Cbfβf/ fPrx1-Cre)小鼠,以研究Cbfβ在产后软骨和骨骼发育中的作用。这些突变小鼠存活到成年,但表现出严重的胸骨和四肢畸形。 Cbfβf/ fPrx1-Cre小鼠的胸骨骨化明显延迟,剑突未钙化并扩大。在新生和7天大的Cbfβf/ fPrx1-Cre小鼠中,静息区显着延长,生长板的增殖区和肥大区急剧缩短和混乱,小梁骨形成减少。此外,在1个月大的Cbfβf/ fPrx1-Cre小鼠中,生长板严重变形,几乎没有小梁骨。另外,Cbfβ缺乏症在体内和体外都损害了膜内骨的形成。有趣的是,尽管印度刺猬(Ihh)的表达大大降低,但Cbfβf/ fPrx1-Cre生长板中甲状旁腺激素相关蛋白(PTHrP)受体(PPR)的表达却显着增加,表明Cbfβ缺乏干扰了Cbfβ的缺乏。 Ihh-PTHrP负调节回路。染色质免疫沉淀(ChIP)分析和启动子荧光素酶测定表明Runx /Cbfβ复合物结合了Ihh启动子区域的假定Runx结合位点,而且Runx /Cbfβ复合物在转录水平上直接上调了Ihh表达。一致地,在缺乏Cbfβ的软骨细胞中,Ihh靶基因的表达被下调,包括CyclinD1,Ptc和Pthlh。综上所述,我们的研究不仅揭示了Cbfβ对于产后小鼠骨骼的软骨生长和维持骨骼的生长和维持至关重要,而且还具有上调Ihh表达以促进软骨细胞增殖和成骨细胞分化以及抑制PPR表达的作用。增强软骨细胞分化。

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