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首页> 外文期刊>Brain research >CNQX and AMPA inhibit electrical synaptic transmission: A potential interaction between electrical and glutamatergic synapses.
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CNQX and AMPA inhibit electrical synaptic transmission: A potential interaction between electrical and glutamatergic synapses.

机译:CNQX和AMPA抑制电突触传递:电和谷氨酸能突触之间的潜在相互作用。

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Electrical synapses play an important role in signaling between neurons and the synaptic connections between many neurons possess both electrical and chemical components. Although modulation of electrical synapses is frequently observed, the cellular processes that mediate such changes have not been studied as thoroughly as plasticity in chemical synapses. In the leech (Hirudo sp), the competitive AMPA receptor antagonist CNQX inhibited transmission at the rectifying electrical synapse of a mixed glutamatergic/electrical synaptic connection. This CNQX-mediated inhibition of the electrical synapse was blocked by concanavalin A (Con A) and dynamin inhibitory peptide (DIP), both of which are known to inhibit endocytosis of neurotransmitter receptors. CNQX-mediated inhibition was also blocked by pep2-SVKI (SVKI), a synthetic peptide that prevents internalization of AMPA-type glutamate receptor. AMPA itself also inhibited electrical synaptic transmission and this AMPA-mediated inhibition was partially blocked by Con A, DIP and SVKI. Low frequency stimulation induced long-term depression (LTD) in both the electrical and glutamatergic components of these synapses and this LTD was blocked by SVKI. GYKI 52466, a selective non-competitive antagonist of AMPA receptors, did not affect the electrical EPSP, although it did block the glutamatergic component of these synapses. CNQX did not affect non-rectifying electrical synapses in two different pairs of neurons. These results suggest an interaction between AMPA-type glutamate receptors and the gap junction proteins that mediate electrical synaptic transmission. This putative interaction between glutamate receptors and gap junction proteins represents a novel mechanism for regulating the strength of synaptic transmission.
机译:电突触在神经元之间的信号传导中起重要作用,许多神经元之间的突触连接同时具有电和化学成分。尽管经常观察到电突触的调节,但尚未像化学突触的可塑性那样彻底地研究了介导这种变化的细胞过程。在水ech(Hirudo sp)中,竞争性AMPA受体拮抗剂CNQX抑制了混合谷氨酸能/电突触连接的整流电突触的传递。 CNQX介导的对电突触的抑制被伴刀豆球蛋白A(Con A)和动力蛋白抑制肽(DIP)阻断,这两种抑制剂均抑制神经递质受体的内吞作用。 CNQX介导的抑制作用也被pep2-SVKI(SVKI)阻断,后者是一种防止AMPA型谷氨酸受体内在化的合成肽。 AMPA本身也抑制突触传递,这种AMPA介导的抑制作用被Con A,DIP和SVKI部分阻止。低频刺激在这些突触的电子和谷氨酸能成分中引起长期抑制(LTD),该LTD被SVKI阻断。 GYKI 52466是AMPA受体的选择性非竞争性拮抗剂,尽管它确实阻断了这些突触的谷氨酸能成分,但它不影响电EPSP。 CNQX不会影响两对不同神经元中的非矫正电突触。这些结果表明,AMPA型谷氨酸受体与介导电突触传递的间隙连接蛋白之间存在相互作用。谷氨酸受体和间隙连接蛋白之间的这种假定的相互作用代表了一种调节突触传递强度的新机制。

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