Institut de Physiologie et Biologie Cellulaires, University of Poitiers, CNRS UMR 6187, 86022, Poitiers Cedex, France.
Cell Tissue Res. 2010 Apr;340(1):103-15. doi: 10.1007/s00441-009-0924-5. Epub 2010 Mar 2.
Bone is a dynamic tissue that undergoes a precise remodeling process involving resorptive osteoclastic cells and bone-forming osteoblastic (OB) cells. The functional imbalance of either of these cell types can lead to severe skeletal diseases. The proliferation and differentiation of OB cells play a major role in bone development and turnover. These cellular processes are coordinated by connexin43 (Cx43)-based gap-junctional intercellular communication (GJIC) and by soluble factors such as endothelin-1 (ET-1). We have used the Cx43 heterozygous (Cx43(+/-)) murine model to study the possible cross-talk between Cx43 and ET-1 in cultured calvarial OB cells. On microcomputed tomographic analysis of 3-day-old pups, Cx43(+/-) mice showed hypomineralized calvaria in comparison with their Cx43(+/+) littermates. Characterization of cultured OB cells clearly demonstrated the effect of the partial deletion of the Cx43 gene on its expression, on GJIC, and subsequently on OB differentiation. In this model, ET-1 (10(-8) M) lost its mitogenic action in Cx43(+/-) OB cells compared with Cx43(+/+) cells. Moreover, a correlation between the inhibition of cell differentiation by ET-1 and the decreased amount and function of Cx43 was found in Cx43(+/+) OB cells but not in their Cx43(+/-) counterparts. Thus, as Cx43 is linked to OB differentiation, our data indicate that this mitogenic ET-1 peptide has pronounced effects on fully differentiated OB cells. With respect to roles in mechanotransduction and OB differentiation, Cx43 might modulate osteoblastic sensitivity to soluble factors.
骨是一种动态组织,经历精确的重塑过程,涉及吸收性破骨细胞和骨形成成骨细胞(OB)。这两种细胞类型中的任何一种的功能失衡都可能导致严重的骨骼疾病。OB 细胞的增殖和分化在骨发育和更新中起主要作用。这些细胞过程通过连接蛋白 43(Cx43)为基础的缝隙连接细胞间通讯(GJIC)和内皮素-1(ET-1)等可溶性因子来协调。我们使用 Cx43 杂合(Cx43(+/-))小鼠模型来研究培养的颅盖 OB 细胞中 Cx43 和 ET-1 之间可能存在的交叉对话。在对 3 日龄幼鼠的 microCT 分析中,与 Cx43(+/+)同窝仔相比,Cx43(+/-)小鼠的颅盖骨表现出低矿化。对培养的 OB 细胞的特征分析清楚地表明了 Cx43 基因部分缺失对其表达、GJIC 以及随后的 OB 分化的影响。在该模型中,与 Cx43(+/+)细胞相比,ET-1(10(-8) M)在 Cx43(+/-)OB 细胞中失去了有丝分裂作用。此外,在 Cx43(+/+)OB 细胞中发现 ET-1 抑制细胞分化与 Cx43 数量和功能降低之间存在相关性,但在其 Cx43(+/-)对应物中未发现。因此,由于 Cx43 与 OB 分化有关,我们的数据表明,这种有丝分裂 ET-1 肽对完全分化的 OB 细胞有明显的作用。就机械转导和 OB 分化的作用而言,Cx43 可能调节成骨细胞对可溶性因子的敏感性。