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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Evidence of a role for cyclic ADP-ribose in calcium signalling and neurotransmitter release in cultured astrocytes.
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Evidence of a role for cyclic ADP-ribose in calcium signalling and neurotransmitter release in cultured astrocytes.

机译:在培养的星形胶质细胞中环状ADP-核糖在钙信号传导和神经递质释放中的作用的证据。

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摘要

Astrocytes possess different, efficient ways to generate complex changes in intracellular calcium concentrations, which allow them to communicate with each other and to interact with adjacent neuronal cells. Here we show that cultured hippocampal astrocytes coexpress the ectoenzyme CD38, directly involved in the metabolism of the calcium mobilizer cyclic ADP-ribose, and the NAD+ transporter connexin 43. We also demonstrate that hippocampal astrocytes can release NAD+ and respond to extracellular NAD+ or cyclic ADP-ribose with intracellular calcium increases, suggesting the existence of an autocrine cyclic ADP-ribose-mediated signalling. Cyclic ADP-ribose-induced calcium changes are in turn responsible for an increased glutamate and GABA release, this effect being completely inhibited by the cyclic ADP-ribose specific antagonist 8-NH2-cADPR. Furthermore, addition of NAD+ to astrocyte-neuron co-cultures results in a delayed intracellular calcium transient in neuronal cells, which is strongly but not completely inhibited by glutamate receptor blockers. These data indicate that an astrocyte-to-neuron calcium signalling can be triggered by the CD38/cADPR system, which, through the activation of intracellular calcium responses in astrocytes, is in turn responsible for the increased release of neuromodulators from glial cells.
机译:星形胶质细胞具有不同的有效方式来产生细胞内钙浓度的复杂变化,从而使它们彼此交流并与相邻的神经元细胞相互作用。在这里,我们显示培养的海马星形胶质细胞共表达胞外酶CD38,其直接参与钙动员环ADP-核糖和NAD +转运蛋白连接蛋白43的代谢。 -核糖与细胞内钙的增加,表明存在自分泌环ADP-核糖介导的信号传导。环状ADP-核糖诱导的钙变化反过来又导致谷氨酸和GABA的释放增加,这种作用被环状ADP-核糖特异性拮抗剂8-NH2-cADPR完全抑制。此外,向星形胶质细胞-神经元共培养物中添加NAD +会导致神经元细胞中的细胞内钙瞬变延迟,这会被谷氨酸受体阻滞剂强烈但不能完全抑制。这些数据表明,星形胶质细胞至神经元的钙信号传导可以由CD38 / cADPR系统触发,该系统通过激活星形胶质细胞中的细胞内钙反应,进而导致神经调节剂从神经胶质细胞释放的增加。

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