首页> 美国卫生研究院文献>The Journal of Neuroscience >Presynaptic P2X Receptors Facilitate Inhibitory GABAergic Transmission between Cultured Rat Spinal Cord Dorsal Horn Neurons
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Presynaptic P2X Receptors Facilitate Inhibitory GABAergic Transmission between Cultured Rat Spinal Cord Dorsal Horn Neurons

机译:突触前P2X受体促进培养的大鼠脊髓背角神经元之间的抑制性GABA能传递。

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摘要

The superficial layers of the spinal cord dorsal horn (DH) express P2X2, P2X4, and P2X6 subunits entering into the formation of ionotropic (P2X) receptors for ATP. Using a culture system of laminae I–III from neonatal rat DH, we show that ATP induced a fast nonselective cation current in 38% of the neurons (postsynaptic effect). ATP also increased the frequency of miniature IPSCs (mIPSCs) mediated by GABAA receptors or by glycine receptors in 22 and 9%, respectively, of the neurons tested (presynaptic effect) but had no effect on glutamatergic transmission. The presynaptic effect of ATP on GABAergic transmission was not significantly affected by thapsigargin (1 μm) but was completely dependent on Ca2+ influx. Presynaptic and postsynaptic effects were inhibited by suramin, pyridoxalphosphate-6-azophenyl-2′,4′-disulfonic acid, and reactive blue and were not reproduced by uridine 5′-triphosphate (UTP) or adenosine 5′-O-(2-thiodiphosphate) (ADP-β-S), suggesting the implication of ionotropic P2X rather than of metabotropic P2Y receptors. αβ-methylene-ATP (100 μm) did not reproduce the effects of ATP. ATP reversibly increased the amplitude of electrically evoked GABAergic IPSCs and reduced paired-pulse inhibition or facilitation without affecting IPSC kinetics. This effect was preferentially, but not exclusively, observed in neurons coreleasing ATP and GABA. We conclude that in cultured DH neurons, the effects of ATP are mediated by P2X receptors having a pharmacological profile dominated by the P2X2 subunit. The presynaptic receptors might underlie a modulatory action of ATP on a subset of GABAergic interneurons involved in the spinal processing of nociceptive information.
机译:脊髓背角(DH)的表层表达P2X2,P2X4和P2X6亚基,这些亚基形成了ATP的离子(P2X)受体。使用新生大鼠DH的薄片I–III的培养系统,我们显示ATP在38%的神经元中诱导了快速的非选择性阳离子电流(突触后作用)。 ATP还分别增加了22%和9%的神经元的GABAA受体或甘氨酸受体介导的微型IPSC(mIPSC)的频率(突触前作用),但对谷氨酸能传递没有影响。 thapsigargin(1μm)对ATP对GABA能传递的突触前作用没有显着影响,但完全取决于Ca 2 + 的流入。苏拉明,磷酸吡al醛-6-偶氮苯基-2',4'-二磺酸和活性蓝抑制突触前和突触后作用,而尿苷5'-三磷酸(UTP)或腺苷5'-O-(2-硫二磷酸)(ADP-β-S),暗示了离子型P2X而不是代谢型P2Y受体的含义。 αβ-亚甲基-ATP(100μm)没有再现ATP的作用。 ATP可逆地增加了电诱发的GABA能IPSC的幅度,并降低了对脉冲抑制或促进的作用,而不会影响IPSC动力学。优先但非排他地在增加ATP和GABA的神经元中观察到了这种作用。我们得出的结论是,在培养的DH神经元中,ATP的作用是由P2X受体介导的,该受体具有以P2X2亚基为主的药理学特征。突触前受体可能是ATP对参与伤害性信息的脊髓处理的GABA能中间神经元的调节作用的基础。

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