首页> 美国卫生研究院文献>The Journal of Physiology >Oxytocin retrogradely inhibits evoked but not miniature EPSCs in the rat supraoptic nucleus: role of N- and P/Q-type calcium channels
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Oxytocin retrogradely inhibits evoked but not miniature EPSCs in the rat supraoptic nucleus: role of N- and P/Q-type calcium channels

机译:催产素逆行抑制大鼠视上核中诱发的(但不是微型的)EPSC:N和P / Q型钙通道的作用

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摘要

class="enumerated" style="list-style-type:decimal">We previously reported that oxytocin (OXT), released from the dendrites of magnocellular neurons in the supraoptic nucleus (SON), acts retrogradely on presynaptic terminals to inhibit glutamatergic transmission. Here we test the hypothesis that oxytocin reduces calcium influx into the presynaptic terminal.We used nystatin perforated-patch recording in vitro to first identify the calcium channels involved in glutamatergic transmission in the SON. ω-Conotoxin GVIA (ω-CTx) and ω-Agatoxin TK (ω-Aga) both reduced evoked EPSC amplitude, while nicardipine and nickel had no effect. A combination of ω-CTx and ω-Aga completely abolished the evoked EPSCs.This depressant effect was accompanied by an increase in the paired pulse ratio with no change in the kinetics of the evoked EPSCs, AMPA currents or postsynaptic cell properties. These results suggest that presynaptic N- and P/Q-type calcium channels mediate glutamate release in the SON while L-, T- and R-type channels make little or no contribution.Oxytocin-induced reduction of the evoked EPSC was substantially occluded in the presence of ω-CTx but only partially in the presence of ω-Aga.Amastatin, an endopeptidase inhibitor that increases the level of endogenous OXT, also reduced the evoked EPSC. This amastatin effect was also occluded by ω-CTx and ω-Aga.Miniature EPSCs, which are independent of extracellular calcium, were unaffected by either ω-CTx or by OXT, thus further substantiating an action of both compounds on calcium channels.Therefore, dendritically released oxytocin acts mainly via a mechanism involving the N-type channel, and to a lesser extent the P/Q-type channel, to decrease excitatory transmission.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 我们先前曾报道过催产素(OXT),从视上核(SON)的大细胞神经元树突释放,在突触前末端逆行地抑制谷氨酸能传递。在这里,我们测试了催产素减少钙流入突触前末端的假设。 我们使用了制霉菌素穿孔贴片体外记录,首先确定了SON中谷氨酸能传递所涉及的钙通道。 ω-ConotoxinGVIA(ω-CTx)和ω-AgatoxinTK(ω-Aga)均可降低诱发的EPSC幅度,而尼卡地平和镍则无影响。 ω-CTx和ω-Aga的组合完全消除了诱发的EPSC。 这种抑制作用伴随着配对脉冲比的增加,而诱发的EPSC,AMPA电流或突触后细胞特性。这些结果表明,突触前的N和P / Q型钙通道介导SON中的谷氨酸释放,而L,T和R型通道几乎没有贡献。 催产素诱导的钙减少在ω-CTx存在下,诱发的EPSC基本上被闭塞,而在ω-Aga存在下则仅被部分闭塞。 阿马他汀(一种内肽酶抑制剂,可增加内源性OXT的水平)也降低了诱发的EPSC。这种阿马他汀效应也被ω-CTx和ω-Aga所阻断。 与细胞外钙离子无关的微型EPSC不受ω-CTx或OXT的影响,因此进一步证实了两者的作用因此,树突状释放的催产素主要通过一种涉及N型通道的机制起作用,而在较小程度上是P / Q型通道,以减少兴奋性传递。 >

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