首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Calcium currents in GH3 cultured pituitary cells under whole-cell voltage-clamp: inhibition by voltage-dependent potassium currents.
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Calcium currents in GH3 cultured pituitary cells under whole-cell voltage-clamp: inhibition by voltage-dependent potassium currents.

机译:全细胞电压钳制下GH3培养的垂体细胞中的钙电流:受电压依赖性钾电流的抑制。

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摘要

To isolate inward Ca2+ currents in GH3 rat pituitary cells, an inward Na+ current as well as two outward K+ currents, a transient voltage-dependent current (IKV) and a slowly rising Ca2+-activated current (IKCa), must be suppressed. Blockage of these outward currents, usually achieved by replacement of intracellular K+ with Cs+, reveals sustained inward currents. Selective blockage of either K+ current can be accomplished in the presence of intracellular K+ by use of quaternary ammonium ions. When IKCa and Na+ currents are blocked, the net current elicited by stepping the membrane potential (Vm) from -60 to 0 mV is inward first, becomes outward and peaks in 10-30 msec, and finally becomes inward again. Under this condition, in which both IKV and Ca2+ currents should be present throughout the duration of the voltage step, the Ca2+ current was not detected at the time of peak outward current. That is, plots of peak outward current vs. Vm are monotonic and are not modified by nisoldipine or low external Ca2+ as would be expected if Ca2+ currents were present. However, similar plots at times other than at peak current are not monotonic and are altered by nisoldipine or low Ca2+ (i.e., inward currents decrease and plots become monotonic). When K+ channels are first inactivated by holding Vm at -30 mV, a sustained Ca2+ current is always observed upon stepping Vm to 0 mV. Furthermore, substitution of Ba2+ for Ca2+ causes blockage of IKV and inhibition of this current results in inward Ba2+ currents with square wave kinetics. These data indicate that the Ca2+ current is completely inhibited at peak outward IKV and that Ca2+ conductance is progressively disinhibited as the transient K+ current declines due to channel inactivation. This suggests that in GH3 cells Ca2+ channels are regulated by IKV.
机译:为了隔离GH3大鼠垂体细胞的内向Ca2 +电流,必须抑制内向Na +电流以及两个外向K +电流,瞬态电压依赖性电流(IKV)和缓慢上升的Ca2 +激活电流(IKCa)。通常通过用Cs +替代细胞内K +来实现对这些外向电流的阻断,显示出持续的内向电流。可以通过使用季铵离子在细胞内K +存在下实现对K +电流的选择性阻断。当IKCa和Na +电流被阻隔时,通过将膜电位(Vm)从-60步进到0 mV引起的净电流首先向内,向外并在10-30毫秒内达到峰值,最后再次向内。在这种情况下,IKV和Ca2 +电流在整个电压阶跃过程中都应同时存在,在峰值向外电流时未检测到Ca2 +电流。也就是说,峰值向外电流与Vm的关系图是单调的,并且不会被尼索地平或外部Ca2 +含量低的情况所修改,如果存在Ca2 +电流的话则不会如此。但是,在峰值电流以外的时间,类似的图不是单调的,而是被尼索地平或低Ca2 +所改变(即,内向电流减小,图变成单调的)。当首先通过将Vm保持在-30 mV使K +通道失活时,在将Vm步进至0 mV时始终观察到持续的Ca2 +电流。此外,用Ba2 +代替Ca2 +会导致IKV受阻,并且对该电流的抑制会导致具有方波动力学的向内Ba2 +电流。这些数据表明,Ca2 +电流在向外的IKV峰值处被完全抑制,并且由于瞬态K +电流由于通道失活而下降,因此Ca2 +电导被逐渐抑制。这表明在GH3细胞中,Ca2 +通道受IKV调节。

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