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Functional significance of the negative-feedback regulation of ATP release via pannexin-1 hemichannels under ischemic stress in astrocytes

机译:星形胶质细胞缺血应激下通过pannexin-1半通道负反馈调节ATP释放的功能意义

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摘要

The opening of pannexin-1 (Px1) hemichannels is regulated by the activity of P2X7 receptors (P2X7Rs). At present, however, little is known about how extracellular ATP-sensitive P2X7Rs regulates the opening and closure of Px1 hemichannels. Several lines of evidence suggest that P2X7Rs are activated under pathological conditions such as ischemia, resulting in the opening of Px1 hemichannels responsible for the massive influx of Ca^[2+] from the extracellular space and the release of ATP from the cytoplasm, leading to cell death. Here we show in cultured astrocytes that the suppression of the activity of P2X7Rs during simulated ischemia (oxygen/glucose deprivation, OGD) resulted in the opening of Px1 hemichannels, leading to the enhanced release of ATP. In addition, the suppression of the activity of P2X7Rs during OGD resulted in a significant increase in astrocytic damage. Both the P2X7Rs suppression-induced enhancement of the release of ATP and cell damage were reversed by co-treatment with blockers of Px1 hemichannels, suggesting that suppression of the activity of PX7Rs resulted in the opening of Px1 hemichannels. All these findings suggested the existence of a negative-feedback loop regulating the release of ATP via Px1 hemichannels; ATP-induced suppression of ATP release. The present study indicates that ATP, released through Px1 hemichannels, activates P2X7Rs, resulting in the closure of Px1 hemichannels during ischemia. This negative-feedback mechanism, suppressing the loss of cellular ATP and Ca^[2+] influx, might contribute to the survival of astrocytes under ischemic stress.
机译:Pannexin-1(Px1)半通道的开放受P2X7受体(P2X7Rs)的活性调节。但是,目前对细胞外ATP敏感的P2X7Rs如何调控Px1半通道的打开和关闭的了解甚少。几条证据表明,P2X7R在诸如缺血等病理条件下被激活,导致Px1半通道的打开,负责从细胞外空间大量流入Ca ^ [2+],并从细胞质释放ATP,从而导致细胞死亡。在这里,我们显示了在培养的星形胶质细胞中,模拟缺血(氧气/葡萄糖剥夺,OGD)过程中P2X7Rs活性的抑制导致Px1半通道的开放,从而导致ATP的释放增强。此外,在OGD期间抑制P2X7R的活性导致星形胶质细胞损伤的显着增加。 P2X7Rs抑制诱导的ATP释放增强和细胞损伤均通过与Px1半通道阻滞剂共同处理而逆转,这表明PX7Rs活性的抑制导致Px1半通道的开放。所有这些发现表明存在负反馈环,该负反馈环调节通过Px1半通道释放ATP。 ATP诱导的ATP释放抑制。本研究表明,通过Px1半通道释放的ATP激活P2X7Rs,从而导致缺血期间Px1半通道的关闭。这种负反馈机制,抑制细胞ATP和Ca ^ [2+]流入的损失,可能有助于缺血应激下星形胶质细胞的存活。

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