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Mechanical stress-activated integrin α5β1 induces opening of connexin 43 hemichannels

机译:机械应力激活的整联蛋白α5β1诱导连接蛋白43半通道的开放

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摘要

The connexin 43 (Cx43) hemichannel (HC) in the mechanosensory osteocytes is a major portal for the release of factors responsible for the anabolic effects of mechanical loading on bone formation and remodeling. However, little is known about how the Cx43 molecule responds to mechanical stimulation leading to the opening of the HC. Here, we demonstrate that integrin α5β1 interacts directly with Cx43 and that this interaction is required for mechanical stimulation-induced opening of the Cx43 HC. Direct mechanical perturbation via magnetic beads or conformational activation of integrin α5β1 leads to the opening of the Cx43 HC, and this role of the integrin is independent of its association with an extracellular fibronectin substrate. PI3K signaling is responsible for the shear stress-induced conformational activation of integrin α5β1 leading to the opening of the HC. These results identify an unconventional function of integrin that acts as a mechanical tether to induce opening of the HC and provide a mechanism connecting the effect of mechanical forces directly to anabolic function of the bone.
机译:机械感觉性骨细胞中的连接蛋白43(Cx43)半通道(HC)是释放机械负荷对骨形成和重塑的合成代谢作用负责的因子的主要门户。但是,关于Cx43分子如何响应导致HC开放的机械刺激知之甚少。在这里,我们证明了整联蛋白α5β1与Cx43直接相互作用,并且这种相互作用是机械刺激诱导的Cx43 HC开放所必需的。经由磁珠的直接机械扰动或整联蛋白α5β1的构象活化导致Cx43 HC的开放,而整联蛋白的这种作用与其与细胞外纤连蛋白底物的缔合无关。 PI3K信号传导负责剪切应力诱导的整联蛋白α5β1的构象活化,从而导致HC的开放。这些结果确定了整联蛋白的非常规功能,其充当机械系链以诱导HC的开放,并提供了将机械力的作用直接连接至骨骼的合成代谢功能的机制。

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