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Protection of Cardiomyocytes from the Hypoxia-Mediated Injury by a Peptide Targeting the Activator of G-Protein Signaling 8

机译:通过靶向G蛋白信号传导激活剂的肽保护心肌细胞免受缺氧介导的损伤8

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摘要

Signaling via heterotrimeric G-protein is involved in the development of human diseases including ischemia-reperfusion injury of the heart. We previously identified an ischemia-inducible G-protein activator, activator of G-protein signaling 8 (AGS8), which regulates Gβγ signaling and plays a key role in the hypoxia-induced apoptosis of cardiomyocytes. Here, we attempted to intervene in the AGS8-Gβγ signaling process and protect cardiomyocytes from hypoxia-induced apoptosis with a peptide that disrupted the AGS8-Gβγ interaction. Synthesized AGS8-peptides, with amino acid sequences based on those of the Gβγ-binding domain of AGS8, successfully inhibited the association of AGS8 with Gβγ. The AGS8-peptide effectively blocked hypoxia-induced apoptosis of cardiomyocytes, as determined by DNA end-labeling and an increase in cleaved caspase-3. AGS8-peptide also inhibited the change in localization/permeability of channel protein connexin 43, which was mediated by AGS8-Gβγ under hypoxia. Small compounds that inhibit a wide range of Gβγ signals caused deleterious effects in cardiomyocytes. In contrast, AGS8-peptide did not cause cell damage under normoxia, suggesting an advantage inherent in targeted disruption of the AGS8-Gβγ signaling pathway. These data indicate a pivotal role for the interaction of AGS8 with Gβγ in hypoxia-induced apoptosis of cardiomyocytes, and suggest that targeted disruption of the AGS8-Gβγ signal provides a novel approach for protecting the myocardium against ischemic injury.
机译:通过异源三聚体G蛋白发出的信号涉及人类疾病的发展,包括心脏的缺血再灌注损伤。我们先前确定了一种缺血诱导的G蛋白活化剂,G蛋白信号传导8(AGS8)的活化剂,它调节Gβγ信号传导,并且在缺氧诱导的心肌细胞凋亡中起关键作用。在这里,我们试图干预AGS8-Gβγ信号传导过程,并通过破坏AGS8-Gβγ相互作用的肽保护心肌细胞免受缺氧诱导的细胞凋亡。具有基于AGS8的Gβγ结合结构域的氨基酸序列的氨基酸序列的合成的AGS8肽成功地抑制了AGS8与Gβγ的缔合。 AGS8肽有效地阻断了低氧诱导的心肌细胞凋亡,这通过DNA末端标记和裂解的caspase-3的增加来确定。在缺氧条件下,AGS8-肽也抑制了通道蛋白连接蛋白43的定位/通透性变化,该变化是由AGS8-Gβγ介导的。抑制多种Gβγ信号的小化合物对心肌细胞产生有害作用。相反,在常氧下,AGS8-肽不会引起细胞损伤,这表明在靶向破坏AGS8-Gβγ信号通路中固有的优势。这些数据表明在缺氧诱导的心肌细胞凋亡中AGS8与Gβγ相互作用的关键作用,并表明AGS8-Gβγ信号的靶向破坏提供了一种保护心肌免受缺血性损伤的新方法。

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