首页> 外文期刊>Journal of bone and mineral research: the official journal of the American Society for Bone and Mineral Research >Connexin43 and Runx2 Interact to Affect Cortical Bone Geometry, Skeletal Development, and Osteoblast and Osteoclast Function
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Connexin43 and Runx2 Interact to Affect Cortical Bone Geometry, Skeletal Development, and Osteoblast and Osteoclast Function

机译:Connexin43和Runx2相互作用以影响皮质骨几何形状,骨骼发育和成骨细胞和破骨细胞功能

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The coupling of osteoblasts and osteocytes by connexin43 (Cx43) gap junctions permits the sharing of second messengers that coordinate bone cell function and cortical bone acquisition. However, details of how Cx43 converts shared second messengers into signals that converge onto essential osteogenic processes are incomplete. Here, we use in vitro and in vivo methods to show that Cx43 and Runx2 functionally interact to regulate osteoblast gene expression and proliferation, ultimately affecting cortical bone properties. Using compound hemizygous mice for the Gja1 (Cx43) and Runx2 genes, we observed a skeletal phenotype not visible in wild-type or singly hemizygous animals. Cortical bone analysis by micro-computed tomography (mCT) revealed that 8week- old male, compound Gja1+/-Runx2+/-mice have a marked increase in cross-sectional area, endosteal and periosteal bone perimeter, and an increase in porosity compared to controls. These compound Gja1+/-Runx2+/-mice closely approximate the cortical bone phenotypes seen in osteoblast-specific Gja1-conditional knockout models. Furthermore, mCT analysis of skulls revealed an altered interparietal bone geometry in compound hemizygotes. Consistent with this finding, Alizarin red/Alcian blue staining of 2-day-old Gja1+/-Runx2+/-neonates showed a hypomorphic interparietal bone, an exacerbation of the open fontanelles, and a further reduction in the hypoplastic clavicles compared to Runx2+/-neonates. Expression of osteoblast genes, including osteocalcin, osterix, periostin, and Hsp47, was markedly reduced in tibial RNA extracts from compound hemizygous mice, and osteoblasts from compound hemizygous mice exhibited increased proliferative capacity. Further, the reduced osteocalcin expression and hyperproliferative nature of osteoblasts from Cx43 deficient mice was rescued by Runx2 expression. In summary, these findings provide evidence that Cx43 and Runx2 functionally intersect in vivo to regulate cortical bone properties and affect osteoblast differentiation and proliferation, and likely contributes to aspects of the skeletal phenotype of Cx43 conditional knockout mice. (C) 2017 American Society for Bone and Mineral Research.
机译:通过Connexin43(CX43)间隙结的成骨细胞和骨细胞的偶联允许共享第二信使,其坐标骨细胞功能和皮质骨采集。但是,CX43如何将共享的第二信使转换为会聚到必要的成骨过程的信号中的细节是不完整的。在此,我们在体外和体内使用方法表明CX43和RUNX2在功能上相互作用以调节成骨细胞基因表达和增殖,最终影响皮质骨性质。对GJA1(CX43)和RUNX2基因的复合嗜盐小鼠,我们观察到野生型或单颗粒动物不可见的骨骼表型。微计算机断层扫描(MCT)皮质骨分析显示,8周老雄性,化合物GJA1 +/- runx2 +/-小鼠的横截面积,内骨膜和骨周围骨周围的显着增加,以及与对照相比的孔隙率的增加。这些化合物GJA1 +/- runx2 +/-小鼠近似近似于骨缩合特异性GJA1条件敲除模型中所见的皮质骨表型。此外,颅骨的MCT分析揭示了复合血栓蛋白的改变的骨骨几何形状。与此发现一致,茜素红/阿尔西亚蓝染色为期2天大的GJA1 +/- runx2 +/-新癌酸盐显示了骨折的骨骨,并加剧了开放式鸢尾花,与Runx2 +/-相比,软骨碎片的进一步减少新生儿。在来自复合血红素小鼠的胫骨RNA萃取物中显着降低了成骨细胞基因,包括骨钙素,Osterix,肝细胞素和Hsp47的表达,复合血红素小鼠的成骨细胞表现出增加的增殖能力。此外,通过RUNX 2表达拯救了CX43缺陷小鼠的降低的骨钙化表达和来自CX43缺陷小鼠的成骨细胞的过度渗透性质。总之,这些发现提供了CX43和RunX2在体内功能性相交以调节皮质骨质性质并影响成骨细胞分化和增殖,并且可能有助于CX43条件敲除小鼠的骨骼表型的各方面。 (c)2017年美国骨骼和矿物学学会。

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