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Osteoblast connexin43 modulates skeletal architecture by regulating both arms of bone remodeling

机译:成骨细胞连接蛋白43通过调节骨骼重塑的双臂来调节骨骼结构

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摘要

Connexin43 (Cx43) has an important role in skeletal homeostasis, and Cx43 gene (Gja1) mutations have been linked to oculodentodigital dysplasia (ODDD), a human disorder characterized by prominent skeletal abnormalities. To determine the function of Cx43 at early steps of osteogenesis and its role in the ODDD skeletal phenotype, we have used the Dermo1 promoter to drive Gja1 ablation or induce an ODDD mutation in the chondro-osteogenic linage. Both Gja1 null and ODDD mutant mice develop age-related osteopenia, primarily due to a progressive enlargement of the medullary cavity and cortical thinning. This phenotype is the consequence of a high bone turnover state, with increased endocortical osteoclast-mediated bone resorption and increased periosteal bone apposition. Increased bone resorption is a noncell autonomous defect, caused by exuberant stimulation of osteoclastogenesis by Cx43-deficient bone marrow stromal cells, via decreased Opg production. The latter is part of a broad defect in osteoblast differentiation and function, which also results in abnormal structural and material properties of bone leading to decreased resistance to mechanical load. Thus Cx43 in osteogenic cells is a critical regulator of both arms of the bone remodeling cycle, its absence causing structural changes remindful of aged or disused bone.
机译:连接蛋白43(Cx43)在骨骼稳态中具有重要作用,并且Cx43基因(Gja1)突变与眼突指畸形(ODDD)有关,后者是一种以骨骼异常异常为特征的人类疾病。若要确定Cx43在成骨早期的功能及其在ODDD骨骼表型中的作用,我们已使用Dermo1启动子来驱动Gja1消融或在软骨成骨神经元中诱导ODDD突变。 Gja1 null和ODDD突变小鼠均发生与年龄有关的骨质减少,这主要是由于髓腔的逐渐扩大和皮质变薄。该表型是高骨转换状态的结果,皮质内破骨细胞介导的骨吸收增加,骨膜骨并置增加。骨吸收增加是一种非细胞自主性缺陷,是由Cx43缺乏的骨髓基质细胞通过减少Opg产生而旺盛地刺激破骨细胞生成引起的。后者是成骨细胞分化和功能广泛缺陷的一部分,这也导致骨骼的结构和材料特性异常,导致对机械负荷的抵抗力降低。因此,成骨细胞中的Cx43是骨骼重塑周期两臂的关键调节剂,它的缺失会引起结构变化,提醒骨骼老化或废弃。

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