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连接蛋白43半通道前列腺素释放对机械负荷的适应性

Adaptation of connexin 43-hemichannel prostaglandin release to mechanical loading.

作者信息

Siller-Jackson Arlene J, Burra Sirisha, Gu Sumin, Xia Xuechun, Bonewald Lynda F, Sprague Eugene, Jiang Jean X

机构信息

Department of Biochemistry, University of Texas Health Science Center, San Antonio, Texas 78229-3900, USA.

出版信息

J Biol Chem. 2008 Sep 26;283(39):26374-82. doi: 10.1074/jbc.M803136200. Epub 2008 Jul 31.

Abstract

Bone tissues respond to mechanical loading/unloading regimens to accommodate (re)modeling requirements; however, the underlying molecular mechanism responsible for these responses is largely unknown. Previously, we reported that connexin (Cx) 43 hemichannels in mechanosensing osteocytes mediate the release of prostaglandin, PGE(2), a crucial factor for bone formation in response to anabolic loading. We show here that the opening of hemichannels and release of PGE(2) by shear stress were significantly inhibited by a potent antibody we developed that specifically blocks Cx43-hemichannels, but not gap junctions or other channels. The opening of hemichannels and release of PGE(2) are magnitude-dependent on the level of shear stress. Insertion of a rest period between stress enhances this response. Hemichannels gradually close after 24 h of continuous shear stress corresponding with reduced Cx43 expression on the cell surface, thereby reducing any potential negative effects of channels staying open for extended periods. These data suggest that Cx43-hemichannel activity associated with PGE(2) release is adaptively regulated by mechanical loading to provide an effective means of regulating levels of extracellular signaling molecules responsible for initiation of bone (re)modeling.

摘要

骨组织会对机械加载/卸载方案做出反应,以适应(重新)建模需求;然而,负责这些反应的潜在分子机制在很大程度上尚不清楚。此前,我们报道过机械感受性骨细胞中的连接蛋白(Cx)43半通道介导前列腺素PGE₂的释放,PGE₂是合成代谢性负荷下骨形成的关键因子。我们在此表明,我们研发的一种特异性阻断Cx43半通道而非间隙连接或其他通道的强效抗体,可显著抑制剪切应力引起的半通道开放和PGE₂释放。半通道的开放和PGE₂的释放程度取决于剪切应力水平。在应力之间插入休息期可增强这种反应。连续剪切应力作用24小时后,半通道逐渐关闭,这与细胞表面Cx43表达降低相对应,从而减少了通道长时间开放的任何潜在负面影响。这些数据表明,与PGE₂释放相关的Cx43半通道活性受机械负荷的适应性调节,为调节负责启动骨(重新)建模的细胞外信号分子水平提供了一种有效手段。

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