首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >P-type Ca2+ channels mediate excitatory and inhibitory synaptic transmitter release in crayfish muscle.
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P-type Ca2+ channels mediate excitatory and inhibitory synaptic transmitter release in crayfish muscle.

机译:P型Ca2 +通道介导小龙虾肌肉中的兴奋性和抑制性突触递质释放。

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摘要

The toxin fraction (FTX) and peptide omega-Aga-IVA from the venom of the funnel-web spider Agelenopsis aperta, as well as a synthetic analogue of FTX, specifically block the P-type voltage-dependent Ca2+ channel (VDCC). The effects of these toxins on synaptic transmission were studied in the neuromuscular synapses of the crayfish opener muscle, which has a single excitatory and a single inhibitory motoneuron. FTX selectively and reversibly blocked excitatory and inhibitory postsynaptic currents and potentials in a dose-dependent manner. FTX had no effect on (i) resting and postsynaptic membrane conductance, (ii) postsynaptic L-type VDCC, and (iii) both glutamate- and gamma-aminobutyric acid-induced postsynaptic responses. Mean amplitude and frequency of miniature postsynaptic potentials were unchanged by FTX. The postsynaptic VDCC was inhibited by nifedipine, a selective dihydropyridine antagonist of L-type VDCC, whereas synaptic transmission was unaffected. Transmission was also undisturbed by omega-conotoxin, suggesting that N-type VDCCs are not involved. The peptide omega-Aga-IVA blocked excitatory and inhibitory transmission without affecting postsynaptic VDCC. Synaptic transmission was also blocked by synthetic FTX. We conclude that presynaptic P-type VDCCs are involved in both evoked excitatory and inhibitory transmitter release in crayfish neuromuscular synapses.
机译:漏斗蜘蛛蜘蛛Aperlenopsis aperta的毒液中的毒素级分(FTX)和肽ω-Aga-IVA以及FTX的合成类似物特异性阻断了P型电压依赖性Ca2 +通道(VDCC)。在小龙虾开放肌肉的神经肌肉突触中研究了这些毒素对突触传递的影响,小龙虾开放肌肉具有单个兴奋性和单个抑制运动神经元。 FTX以剂量依赖的方式选择性和可逆地阻断兴奋性和抑制性突触后电流和电位。 FTX对(i)静息和突触后膜电导,(ii)突触后L型VDCC和(iii)谷氨酸和γ-氨基丁酸诱导的突触后反应均无影响。微型突触后电位的平均幅度和频率被FTX保持不变。硝苯地平是L型VDCC的选择性二氢吡啶拮抗剂,可抑制突触后VDCC,而突触传递不受影响。 ω-芋螺毒素也没有干扰传播,表明不涉及N型VDCC。 ω-Aga-IVA肽可阻断兴奋性和抑制性传递,而不会影响突触后VDCC。合成FTX也阻止了突触传递。我们得出结论,突触前P型VDCCs参与小龙虾神经肌肉突触诱发的兴奋性和抑制性递质释放。

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