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“INTEGRINating” the connexin hemichannel function in bone osteocytes through the action of integrin α5

机译:通过整合素α5的作用“整合”骨骨细胞中的连接蛋白半通道功能

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Mechanical loading influences skeletal structural integrity and bone remodeling. Application of a mechanical stimulus such as fluid flow shear stress to the bone osteocytes activates the cascade of mechanotransduction mediated by multiple signaling molecules. Hemichannels formed by connexin molecules are emerging as a candidate mechanosensor. Connexin 43 (Cx43) hemichannels open in response to mechanical stimulation to release bone modulators which influence bone remodeling. Our study identified a direct interaction between integrin α5 and Cx43 which was essential for hemichannels to open. Uncoupling the interaction blocked the hemichannels and shear stress enhanced the interaction between the two proteins to promote channel opening. More importantly, integrin α5, independent of its association with fibronectin, was activated upon shear stress through a PI3K signaling pathway. These results suggest a critical regulatory mechanism for Cx43 hemichannel opening through the association of integrin α5, resulting in release of bone anabolic factors required for bone development.
机译:机械负荷影响骨骼结构的完整性和骨骼重塑。对骨骨细胞施加机械刺激(如流体剪切应力)可激活由多种信号分子介导的机械转导级联反应。连接蛋白分子形成的半通道正在成为一种候选的机械传感器。连接蛋白43(Cx43)半通道响应机械刺激而打开,以释放影响骨骼重塑的骨骼调节剂。我们的研究确定了整联蛋白α5和Cx43之间的直接相互作用,这对于打开半通道至关重要。解开相互作用可阻断半通道,剪切应力增强了两种蛋白质之间的相互作用,从而促进了通道的开放。更重要的是,整联蛋白α5与其与纤连蛋白的缔合无关,在剪切应力下通过PI3K信号通路被激活。这些结果表明通过整联蛋白α5的缔合,Cx43半通道开放的关键调节机制,导致骨骼发育所需的骨骼合成代谢因子的释放。

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