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Nitric Oxide Signalling Augments Neuronal Voltage-Gated L-Type (CaV1) and P/Q-Type (CaV2.1) Channels in the Mouse Medial Nucleus of the Trapezoid Body

机译:一氧化氮信令增强神经元电压门控L型(CaV1)和p / Q型(CaV2.1)在斜方体的小鼠内侧核内频道

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摘要

Nitric Oxide (NO) is a diffusible second messenger that modulates ion channels, intrinsic excitability and mediates synaptic plasticity. In light of its activity-dependent generation in the principal neurons of the medial nucleus of the trapezoid body (MNTB), we have investigated its potential modulatory effects on native voltage-gated calcium channels (CaV) within this nucleus. Whole-cell patch recordings were made from brain slices from P13–15 CBA mice. Slices were incubated with the inhibitor of neuronal nitric oxide synthase (nNOS) 7-nitroindazole (10 µM) and pharmacological blockers used to isolate Ca2+ current subtypes. Unpaired observations in the presence and absence of the NO-donors sodium nitroprusside (SNP, 100 µM) or Diethyl-ammonium-nonoate (DEA, 100 µM) were made to elucidate NO-dependent modulation of the expressed CaV subtypes. A differential effect of NO on the calcium channel subtypes was observed: CaV1 and CaV2.1 (L+R- and P/Q+R-type) conductances were potentiated, whereas N+R-type (CaV2.2) and R-type (CaV2.3) current amplitudes were unaffected. L+R-type currents increased from 0.36±0.04 nA to 0.64±0.11 nA and P/Q+R-type from 0.55±0.09 nA to 0.94±0.05 nA, thereby changing the balance and relative contribution of each subtype to the whole cell calcium current. In addition, N+R-type half-activation voltage was left shifted following NO exposure. NO-dependent modulation of P/Q+R and N+R-type, but not L+R-type, channels was removed by inhibition of soluble guanylyl cyclase (sGC) activity. This data demonstrates a differential effect of NO signalling on voltage-gated calcium entry, by distinct NO-dependent pathways.
机译:一氧化氮(NO)是调节离子通道的扩散的第二信使,内在兴奋性和介导突触塑性。鉴于其在梯形主体(MNTB)的中介核的主要神经元中的活性依赖性产生,我们研究了对该核内的天然电压门控钙通道(CAV)的潜在调节作用。全细胞贴片录制由P13-15 CBA小鼠的脑切片制成。将切片与神经元一氧化氮合酶(NNO)7-硝基吲唑(10μM)的抑制剂温育,以及用于分离Ca 2 + / Sup>电流亚型的药理学阻滞剂。制备在存在和不存在硝酸钠(SNP,100μM)或二乙基 - 壬酸二亚乙酯(DEA,100μm)的情况下的未配对观察,以阐明表达的腔亚型的无依赖性调节。观察到钙通道亚型的差的差异效果:CaV1和Cav2.1(L + R-和P / Q + R型)导电进行增强,而N + R型(CAV2.2)和R-类型(Cav2.3)电流幅度不受影响。 L + R型电流从0.64±0.11na和p / q + r型从0.55±0.09 na增加到0.94±0.05 na,从而改变每个亚型到整个细胞的平衡和相对贡献钙电流。另外,在没有暴露之后,n + r型半激活电压左移。通过抑制可溶性观光环酶(SGC)活性除去不依赖性调节P / Q + R和N + R型,但不是L + R型,通道除去。该数据通过不同的无依赖性途径演示了在电压门控钙入口上的NO信号传导的差异效果。

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