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Modulation of rat erg1, erg2, erg3 and HERG K+ currents by thyrotropin-releasing hormone in anterior pituitary cells via the native signal cascade

机译:促甲状腺激素释放激素在垂体前叶细胞中通过天然信号级联对大鼠erg1,erg2,erg3和HERG K +电流的调节

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摘要

The mechanism of thyrotropin-releasing hormone (TRH)-induced ether-à-go-go-related gene (erg) K+ current modulation was investigated with the perforated-patch whole-cell technique in clonal somatomammotroph GH3/B6 cells. These cells express a small endogenous erg current known to be reduced by TRH. GH3/B6 cells were injected with cDNA coding for rat erg1, erg2, erg3 and HERG K+ channels. The corresponding erg currents were isolated with the help of the specific erg channel blockers E-4031 and dofetilide and their biophysical properties were determined.TRH (1 μm) was able to significantly reduce the different erg currents. The voltage dependence of activation was shifted by 15 mV (erg1), 10 mV (erg2) and 6 mV (erg3) to more positive potentials without strongly affecting erg inactivation. TRH reduced the maximal available erg current amplitude by 12 % (erg1), 13 % (erg2) and 39 % (erg3) and accelerated the time course of erg1 and erg2 channel deactivation, whereas erg3 deactivation kinetics were not significantly altered. The effects of TRH on HERG currents did not differ from those on its rat homologue erg1. In addition, coinjection of rat MiRP1 with HERG cDNA did not influence the TRH-induced modulation of HERG channels.Rat erg1 currents recorded in the cell-attached configuration were reduced by application of TRH to the extra-patch membrane in the majority of the experiments, confirming the involvement of a diffusible second messenger.Application of the phorbol ester phorbol 12-myristate 13-acetate (PMA; 1 μm) shifted the voltage dependence of erg1 activation in the depolarizing direction, but it did not reduce the maximal current amplitude. The voltage shift could not be explained by a selective effect on protein kinase C (PKC) since the PKC inhibitor bisindolylmaleimide I did not block the effects of TRH and PMA on erg1. In addition, cholecystokinin, known to activate the phosphoinositol pathway similarly to TRH, did not significantly affect the erg1 current.Various agents interfering with different known TRH-elicited cellular responses were not able to completely mimic or inhibit the TRH effects on erg1. Tested substances included modulators of the cAMP-protein kinase A pathway, arachidonic acid, inhibitors of tyrosine kinase and mitogen-activated protein kinase, sodium nitroprusside and cytochalasin D.The results demonstrate that all three members of the erg channel subfamily are modulated by TRH in GH3/B6 cells. In agreement with previous studies on the TRH-induced modulation of the endogenous erg current in prolactin-secreting anterior pituitary cells, the TRH effects on overexpressed erg1 channels are not mediated by any of the tested signalling pathways.
机译:利用穿孔膜全细胞技术研究了促性腺激素释放激素(TRH)诱导的醚去相关基因(erg)K +电流调节的机制。这些细胞表达已知被TRH减少的小内源性erg电流。 GH3 / B6细胞注射了编码大鼠erg1,erg2,erg3和HERG K +通道的cDNA。借助特定的erg通道阻滞剂E-4031和多非利特分离出相应的erg电流,并确定其生物物理特性.TRH(1μm)能够显着降低不同的erg电流。激活的电压依存关系被转移了15 mV(erg1),10 mV(erg2)和6 mV(erg3),以产生更多的正电势,而不会严重影响erg的失活。 TRH将最大可用erg电流幅度降低了12%(erg1),13%(erg2)和39%(erg3),并加快了erg1和erg2通道失活的时间进程,而erg3失活动力学没有明显改变。 TRH对HERG电流的影响与其对大鼠同源基因erg1的影响没有差异。此外,将大鼠MiRP1与HERG cDNA共注射不会影响TRH诱导的HERG通道调节。在大多数实验中,通过将TRH应用于膜片外膜可减少细胞附着结构中记录的大鼠erg1电流佛波醇酯佛波醇12-肉豆蔻酸酯13-乙酸酯(PMA; 1μm)的应用使erg1激活的电压依赖性在去极化方向上发生了位移,但并未降低最大电流幅值。由于PKC抑制剂bisindolylmaleimide I并未阻断TRH和PMA对erg1的作用,所以不能通过对蛋白激酶C(PKC)的选择性作用来解释电压偏移。此外,已知与TRH类似地激活磷酸肌醇途径的胆囊收缩素对erg1电流没有显着影响,各种干扰TRH引起的不同细胞反应的药物均不能完全模仿或抑制TRH对erg1的作用。被测物质包括cAMP-蛋白激酶A途径的调节剂,花生四烯酸,酪氨酸激酶和丝裂原激活的蛋白激酶的抑制剂,硝普钠和细胞松弛素D.结果表明,TRH调节了erg通道亚家族的所有三个成员。 GH3 / B6细胞。与先前关于TRH诱导泌乳素垂体前叶细胞内源性erg电流调节的研究一致,TRH对过表达的erg1通道的影响不受任何测试的信号通路的介导。

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