首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Activator of G Protein Signaling 8 (AGS8) Is Required for Hypoxia-induced Apoptosis of Cardiomyocytes
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Activator of G Protein Signaling 8 (AGS8) Is Required for Hypoxia-induced Apoptosis of Cardiomyocytes

机译:低氧诱导的心肌细胞凋亡需要G蛋白信号传导8(AGS8)的激活剂

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摘要

Ischemic injury of the heart is associated with activation of multiple signal transduction systems including the heterotrimeric G-protein system. Here, we report a role of the ischemia-inducible regulator of Gβγ subunit, AGS8, in survival of cardiomyocytes under hypoxia. Cultured rat neonatal cardiomyocytes (NCM) were exposed to hypoxia or hypoxia/reoxygenation following transfection of AGS8siRNA or pcDNA::AGS8. Hypoxia-induced apoptosis of NCM was completely blocked by AGS8siRNA, whereas overexpression of AGS8 increased apoptosis. AGS8 formed complexes with G-proteins and channel protein connexin 43 (CX43), which regulates the permeability of small molecules under hypoxic stress. AGS8 initiated CX43 phosphorylation in a Gβγ-dependent manner by providing a scaffold composed of Gβγ and CX43. AGS8siRNA blocked internalization of CX43 following exposure of NCM to repetitive hypoxia; however it did not influence epidermal growth factor-mediated internalization of CX43. The decreased dye flux through CX43 that occurred with hypoxic stress was also prevented by AGS8siRNA. Interestingly, the Gβγ inhibitor Gallein mimicked the effect of AGS8 knockdown on both the CX43 internalization and the changes in cell permeability elicited by hypoxic stress. These data indicate that AGS8 is required for hypoxia-induced apoptosis of NCM, and that AGS8-Gβγ signal input increased the sensitivity of cells to hypoxic stress by influencing CX43 regulation and associated cell permeability. Under hypoxic stress, this unrecognized response program plays a critical role in the fate of NCM.
机译:心脏的缺血性损伤与包括异源三聚体G蛋白系统在内的多种信号转导系统的激活有关。在这里,我们报道了在缺氧条件下心肌诱导的Gβγ亚基AGS8调节因子的作用。在转染AGS8siRNA或pcDNA :: AGS8后,将培养的大鼠新生心肌细胞(NCM)暴露于缺氧或缺氧/复氧状态。缺氧诱导的NCM细胞凋亡被AGS8siRNA完全阻断,而过表达的AGS8增加了细胞凋亡。 AGS8与G蛋白和通道蛋白连接蛋白43(CX43)形成复合物,该蛋白调节低氧胁迫下小分子的渗透性。 AGS8通过提供由Gβγ和CX43组成的支架,以Gβγ依赖性方式引发CX43磷酸化。 NCM暴露于反复缺氧后,AGS8siRNA阻止了CX43的内在化。但是它不影响表皮生长因子介导的CX43内在化。 AGS8siRNA还可以防止在低氧胁迫下通过CX43的染料通量下降。有趣的是,Gβγ抑制剂Gallein模仿了AGS8敲低对CX43内在化和低氧应激引起的细胞通透性变化的影响。这些数据表明,AGS8是缺氧诱导的NCM凋亡所必需的,而AGS8-Gβγ信号输入通过影响CX43调控和相关的细胞通透性,提高了细胞对缺氧应激的敏感性。在低氧压力下,这种无法识别的反应程序在NCM的命运中起着至关重要的作用。

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