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首页> 外文期刊>Journal of neuroendocrinology >Dependence of hyperpolarisation-activated cyclic nucleotide-gated channel activity on basal cyclic adenosine monophosphate production in spontaneously firing GH3 cells.
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Dependence of hyperpolarisation-activated cyclic nucleotide-gated channel activity on basal cyclic adenosine monophosphate production in spontaneously firing GH3 cells.

机译:自发激发GH3细胞中超极化激活的环状核苷酸门控通道活性对基础环状单磷酸腺苷产生的依赖性。

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The hyperpolarisation-activated cyclic nucleotide-gated (HCN) channels play a distinct role in the control of membrane excitability in spontaneously active cardiac and neuronal cells. Here, we studied the expression and role of HCN channels in pacemaking activity, Ca(2+) signalling, and prolactin secretion in GH(3) immortalised pituitary cells. Reverse transcriptase-polymerase chain reaction analysis revealed the presence of mRNA transcripts for HCN2, HCN3 and HCN4 subunits in these cells. A hyperpolarisation of the membrane potential below - 60 mV elicited a slowly activating voltage-dependent inward current (I(h)) in the majority of tested cells, with a half-maximal activation voltage of -89.9 +/- 4.2 mV and with a time constant of 1.4 +/- 0.2 s at -120 mV. The bath application of 1 mM Cs(+), a commonly used inorganic blocker of I(h), and 100 microM ZD7288, a specific organic blocker of I(h), inhibited I(h) by 90 +/- 4.1% and 84.3 +/- 1.8%, respectively. Receptor- and nonreceptor-mediated activation of adenylyl and soluble guanylyl cyclase and the addition of a membrane permeable cyclic adenosine monophosphate (cAMP) analogue, 8-Br-cAMP, did not affect I(h). Inhibition of basal adenylyl cyclase activity, but not basal soluble guanylyl cyclase activity, led to a reduction in the peak amplitude and a leftward shift in the activation curve of I(h) by 23.7 mV. The inhibition of the current was reversed by stimulation of adenylyl cyclase with forskolin and by the addition of 8-Br-cAMP, but not 8-Br-cGMP. Application of Cs(+) had no significant effect on the resting membrane potential or electrical activity, whereas ZD7288 exhibited complex and I(h)-independent effects on spontaneous electrical activity, Ca(2+) signalling, and prolactin release. These results indicate that HCN channels in GH(3) cells are under tonic activation by basal level of cAMP and are not critical for spontaneous firing of action potentials.
机译:超极化激活的环状核苷酸门控(HCN)通道在自发活跃的心脏和神经元细胞的膜兴奋性控制中起着独特的作用。在这里,我们研究了起搏活动,Ca(2+)信号和催乳激素分泌的GH(3)永生垂体细胞中HCN通道的表达和作用。逆转录酶-聚合酶链反应分析显示在这些细胞中存在HCN2,HCN3和HCN4亚基的mRNA转录物。低于-60 mV的膜电位超极化会在大多数测试电池中引起缓慢激活的电压依赖性内向电流(I(h)),最大激活电压的一半为-89.9 +/- 4.2 mV,并且-120 mV下的时间常数为1.4 +/- 0.2 s。 1 mM Cs(+)(一种常用的I(h)的无机阻滞剂)和100 microM ZD7288(一种I(h)的特定有机阻滞剂)的浸浴可将I(h)抑制90 +/- 4.1%,并且分别为84.3 +/- 1.8%。受体和非受体介导的腺苷酸和可溶性鸟苷酸环化酶的激活以及膜渗透性环状单磷酸腺苷(cAMP)类似物8-Br-cAMP的添加均不影响I(h)。抑制基础腺苷酸环化酶活性,但不抑制基础可溶性鸟苷基环化酶活性,导致I(h)的峰幅度降低和激活曲线向左移动23.7 mV。通过用福司可林刺激腺苷酸环化酶并通过添加8-Br-cAMP而不是8-Br-cGMP来逆转电流的抑制。 Cs(+)的应用对静息膜电位或电活动没有显着影响,而ZD7288对自发电活动,Ca(2+)信号传导和催乳素释放表现出复杂的和I(h)独立的影响。这些结果表明,在GH(3)细胞中的HCN通道受到基础水平的cAMP的滋补激活,对于动作电位的自发激发不是关键。

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