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首页> 外文期刊>Archives of Biochemistry and Biophysics >Role of connexin 43 in the mechanism of action of alendronate: dissociation of anti-apoptotic and proliferative signaling pathways.
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Role of connexin 43 in the mechanism of action of alendronate: dissociation of anti-apoptotic and proliferative signaling pathways.

机译:连接蛋白43在阿仑膦酸作用机制中的作用:抗凋亡和增殖信号通路的解离。

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Bisphosphonates (BPs) inhibit osteocyte and osteoblast apoptosis via opening of connexin (Cx) 43 hemichannels and activating the extracellular signal regulated kinases ERKs. Previously, we hypothesized that intracellular survival signaling is initiated by interaction of BPs with Cx43. However, using whole cell binding assays with [(3)H]-alendronate, herein we demonstrated the presence of saturable, specific and high affinity binding sites in the Cx43-expressing ROS 17/2.8 osteoblastic cells, authentic osteoblasts and MLO-Y4 cells expressing Cx43 or not, as well as in HeLa cells lacking Cx43 expression and ROS 17/2.8 cells pretreated with agents that disassemble Cx channels. In addition, both BPs and the PTP inhibitor Na(3)VO(4) increased proliferation of cells expressing Cx43 or not. Furthermore, although BPs are internalized and inhibit intracellular enzymes in osteoclasts, whether the drugs penetrate non-resorptive bone cells is not known. To clarify this, we evaluated the osteoblastic uptake of AF-ALN, a fluorescently labeled analog of alendronate. AF-ALN was rapidly internalized in cells expressing Cx43 or not indicating that this process is not mediated via Cx43 hemichannels. Altogether, these findings suggest that although required for triggering intracellular survival signaling by BPs, Cx43 is dispensable for cellular BP binding, its uptake, as well as the proliferative effects of these agents.
机译:双膦酸盐(BPs)通过打开连接蛋白(Cx)43个半通道并激活细胞外信号调节激酶ERKs抑制骨细胞和成骨细胞凋亡。以前,我们假设细胞内生存信号是由BP与Cx43相互作用而引发的。但是,使用全细胞结合测定与[(3)H]-阿仑膦酸盐,本文中我们证明了在表达Cx43的ROS 17 / 2.8成骨细胞,真实成骨细胞和MLO-Y4细胞中存在饱和,特异性和高亲和力结合位点Cx43是否表达Cx43,以及在缺乏Cx43表达的HeLa细胞和用可分解Cx通道的试剂预处理的ROS 17 / 2.8细胞中。此外,BP和PTP抑制剂Na(3)VO(4)均可增加表达Cx43或不表达Cx43的细胞的增殖。此外,尽管BP被内在化并抑制破骨细胞中的细胞内酶,但尚不清楚药物是否能穿透非吸收性骨细胞。为了澄清这一点,我们评估了AF-ALN(阿仑膦酸盐的荧光标记类似物)的成骨细胞摄取。 AF-ALN在表达Cx43的细胞中快速内在化或未表达,表明该过程未通过Cx43半通道介导。总而言之,这些发现表明,尽管需要通过BPs触发细胞内生存信号传导,但Cx43对于细胞BP结合,其摄取以及这些试剂的增殖作用都是必不可少的。

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