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CaV 3.1 and CaV 3.3 account for T-type Ca2+ current in GH3 cells

机译:CaV 3.1和CaV 3.3解释了GH3细胞中的T型Ca2 +电流

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T-type Ca2+ channels are important for cell signaling by a variety of cells. We report here the electrophysiological and molecular characteristics of the whole-cell Ca2+ current in GH3 clonal pituitary cells. The current inactivation at 0 mV was described by a single exponential function with a time constant of 18.32 ± 1.87 ms (N = 16). The I-V relationship measured with Ca2+ as a charge carrier was shifted to the left when we applied a conditioning pre-pulse of up to -120 mV, indicating that a low voltage-activated current may be present in GH3 cells. Transient currents were first activated at -50 mV and peaked around -20 mV. The half-maximal voltage activation and the slope factors for the two conditions are -35.02 ± 2.4 and 6.7 ± 0.3 mV (pre-pulse of -120 mV, N = 15), and -27.0 ± 0.97 and 7.5 ± 0.7 mV (pre-pulse of -40 mV, N = 9). The 8-mV shift in the activation mid-point was statistically significant (P
机译:T型Ca2 +通道对于多种细胞的细胞信号传导非常重要。我们在这里报告GH3克隆性垂体细胞中全细胞Ca2 +电流的电生理和分子特征。 0 mV时的电流失活由单个指数函数描述,其时间常数为18.32±1.87 ms(N = 16)。当我们施加高达-120 mV的调节预脉冲时,以Ca2 +作为载流子测得的I-V关系向左移动,表明GH3电池中可能存在低电压激活电流。瞬态电流首先在-50 mV处激活,并在-20 mV附近达到峰值。这两个条件的半最大电压激活和斜率因子分别为-35.02±2.4和6.7±0.3 mV(-120 mV的预脉冲,N = 15)以及-27.0±0.97和7.5±0.7 mV(预--40 mV的脉冲,N = 9)。激活中点的8 mV漂移具有统计学意义(P

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