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Mechanisms underlying presynaptic facilitatory effect of cyclothiazide at the calyx of Held of juvenile rats

机译:环噻嗪对幼年大鼠花萼突触前促进作用的潜在机制

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摘要

class="enumerated" style="list-style-type:decimal">Excitatory postsynaptic currents (EPSCs) were recorded using the whole-cell patch-clamp technique at the calyx of Held synapse in the medial nucleus of the trapezoid body (MNTB) in auditory brainstem slices from juvenile rats.Bath application of cyclothiazide (CTZ, 100 μm) significantly increased the amplitude of EPSCs mediated by α-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid (AMPA) and N-methyl-d-aspartate (NMDA) receptors. Cyclothiazide increased the magnitude of paired-pulse depression of both AMPA-EPSCs (intervals, 50 and 500 ms) and NMDA-EPSCs (interval, 20 ms). In low Ca2+, high Mg2+ solution, CTZ decreased the number of failures and increased the mean amplitude of AMPA-EPSCs more than three-fold.Presynaptic Ca2+ currents and K+ currents were directly recorded from the calyceal nerve terminals. These currents were attenuated by CTZ in a reversible manner. The magnitude of inhibition of presynaptic K+ currents by CTZ (100 μm) was comparable to that by 5 μm 4-aminopyridine (4-AP). Both CTZ and 4-AP slowed the repolarizing phase of presynaptic action potentials.The inhibitory effects of CTZ on presynaptic ion channels were mimicked by a solution having reduced Ca2+ concentration and 5 μm 4-AP. This solution facilitated EPSCs, but the magnitude of facilitation was significantly less than that caused by CTZ.In the presence of tetrodotoxin (TTX), CTZ increased the mean frequency of miniature EPSCs three-fold. CTZ prolonged their decay time but had no effect on their amplitude. The facilitatory effect of CTZ on the miniature frequency was neither blocked by a protein kinase C inhibitor nor occluded by phorbol ester, suggesting that a distinct mechanism underlies the effect of CTZ.We conclude that CTZ facilitates transmitter release through suppression of presynaptic potassium conductance and stimulation of exocytotic machinery downstream of Ca2+ influx.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 使用全细胞膜片钳技术在未成年大鼠的听觉脑干切片中的梯形体内侧核(MNTB)内突触的萼片中记录了兴奋性突触后电流(EPSC)。 浴环噻嗪(CTZ,100μm)的应用显着增加了由α-氨基-3-羟基-5-羟基-5-甲基-4-异恶唑丙酸(AMPA)和N-甲基-d-天冬氨酸(NMDA)受体介导的EPSC的幅度。环乙肼会增加AMPA-EPSC(间隔50和500 ms)和NMDA-EPSC(间隔20 ms)的成对脉冲抑制幅度。在低Ca 2 + ,高Mg 2 + 溶液中,CTZ减少了故障次数,并使AMPA-EPSC的平均幅度增加了三倍以上。 突触前Ca 2 + 电流和K + 电流。这些电流被CTZ以可逆的方式衰减。 CTZ(100μm)对突触前K + 电流的抑制幅度与5μm4-氨基吡啶(4-AP)的抑制幅度相当。 CTZ和4-AP均会减缓突触前动作电位的复极化阶段。 通过降低Ca 2 + 浓度的溶液模拟CTZ对突触前离子通道的抑制作用。 5微米4-AP。此解决方案促进了EPSC的产生,但促进程度明显小于CTZ。 在存在河豚毒素(TTX)的情况下,CTZ将微型EPSC的平均频率提高了三倍。 CTZ延长了衰减时间,但对振幅没有影响。 CTZ对微型频率的促进作用既没有被蛋白激酶C抑制剂阻断,也没有被佛波酯封闭,这表明CTZ的作用是一种独特的机制。 我们得出结论,CTZ促进了CTZ通过抑制突触前钾电导和刺激Ca 2 + 大量涌入下游的胞吐机制。

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