Rudolf-Boehm-Institute of Pharmacology and Toxicology, University of Leipzig, Härtelstr. 16-18, 04107 Leipzig, Germany.
Neuropharmacology. 2010 Nov;59(6):406-15. doi: 10.1016/j.neuropharm.2010.05.013. Epub 2010 Jun 4.
Long-term depression (LTD) is a form of synaptic plasticity that may contribute to information storage in the central nervous system. Here we report that LTD can be elicited in layer 5 pyramidal neurons of the rat prefrontal cortex by pairing low frequency stimulation with a modest postsynaptic depolarization. The induction of LTD required the activation of both metabotropic glutamate receptors of the mGlu1 subtype and voltage-sensitive Ca(2+) channels (VSCCs) of the T/R, P/Q and N types, leading to the stimulation of intracellular inositol trisphosphate (IP3) receptors by IP3 and Ca(2+). The subsequent release of Ca(2+) from intracellular stores activated the protein phosphatase cascade involving calcineurin and protein phosphatase 1. The activation of purinergic P2Y(1) receptors blocked LTD. This effect was prevented by P2Y(1) receptor antagonists and was absent in mice lacking P2Y(1) but not P2Y(2) receptors. We also found that activation of P2Y(1) receptors inhibits Ca(2+) transients via VSCCs in the apical dendrites and spines of pyramidal neurons. In addition, we show that the release of ATP under hypoxia is able to inhibit LTD by acting on postsynaptic P2Y(1) receptors. In conclusion, these data suggest that the reduction of Ca(2+) influx via VSCCs caused by the activation of P2Y(1) receptors by ATP is the possible mechanism for the inhibition of LTD in prefrontal cortex.
长时程抑制( LTD )是一种突触可塑性形式,可能有助于中枢神经系统中的信息存储。在这里,我们报告说,通过将低频刺激与适度的突触后去极化相结合,可以在大鼠前额叶皮层的 5 层锥体神经元中诱发出 LTD 。 LTD 的诱导需要代谢型谷氨酸受体 mGlu1 亚型和 T/R 、 P/Q 和 N 型电压敏感 Ca(2+)通道( VSCC )的激活,从而导致 IP3 和 Ca(2+)刺激细胞内三磷酸肌醇( IP3 )受体。随后,细胞内储存的 Ca(2+)释放激活了涉及钙调神经磷酸酶和蛋白磷酸酶 1 的蛋白磷酸酶级联反应。嘌呤能 P2Y(1)受体的激活阻断了 LTD 。这种效应可以被 P2Y(1)受体拮抗剂阻断,并且在缺乏 P2Y(1)但不缺乏 P2Y(2)受体的小鼠中不存在。我们还发现,P2Y(1)受体的激活通过锥体神经元的顶树突和棘突中的 VSCC 抑制 Ca(2+)瞬变。此外,我们表明,缺氧下 ATP 的释放能够通过作用于突触后 P2Y(1)受体来抑制 LTD 。总之,这些数据表明,通过 ATP 激活 P2Y(1)受体引起的 VSCC 中 Ca(2+)内流的减少可能是前额叶皮层中 LTD 抑制的可能机制。