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首页> 外文期刊>Molecular and cellular neurosciences >Regulation of voltage-gated Ca2+ currents by Ca2+/calmodulin-dependent protein kinase II in resting sensory neurons
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Regulation of voltage-gated Ca2+ currents by Ca2+/calmodulin-dependent protein kinase II in resting sensory neurons

机译:Ca2 + /钙调蛋白依赖性蛋白激酶II对静息感觉神经元的电压门控Ca2 +电流的调节

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Calcium/calmodulin-dependent protein kinase II (CaMKII) is recognized as a key element in encoding depolarization activity of excitable cells into facilitated voltage-gated Ca2+ channel (VGCC) function. Less is known about the participation of CaMKII in regulating VGCCs in resting cells. We examined constitutive CaMKII control of Ca2+ currents in peripheral sensory neurons acutely isolated from dorsal root ganglia (DRGs) of adult rats. The small molecule CaMKII inhibitor KN-93 (1.0 mu M) reduced depolarization-induced I-ca by 16-30% in excess of the effects produced by the inactive homolog KN-92. The specificity of CaMKII inhibition on VGCC function was shown by the efficacy of the selective CaMKII blocking peptide autocamtide-2-related inhibitory peptide in a membrane-permeable myristoylated form, which also reduced VGCC current in resting neurons. Loss of VGCC currents is primarily due to reduced N-type current, as application of mAIP selectively reduced N-type current by approximately 30%, and prior N-type current inhibition eliminated the effect of mAIP on VGCCs, while prior block of L-type channels did not reduce the effect of mAIP on total I-ca. T-type currents were not affected by mAIP in resting DRG neurons. Transduction of sensory neurons in vivo by DRG injection of an adeno-associated virus expressing AIP also resulted in a loss of N-type currents. Together, these findings reveal a novel molecular adaptation whereby sensory neurons retain CaMKII support of VGCCs despite remaining quiescent. Published by Elsevier Inc.
机译:钙/钙调蛋白依赖性蛋白激酶II(CaMKII)被认为是将可兴奋细胞的去极化活性编码为促进电压门控的Ca2 +通道(VGCC)功能的关键元素。关于CaMKII参与调节静息细胞中VGCC的知之甚少。我们检查了成年大鼠背根神经节(DRGs)急性分离的周围感觉神经元中Ca2 +电流的本构CaMKII控制。小分子CaMKII抑制剂KN-93(1.0μM)比非活性同系物KN-92产生的去极化诱导的I-ca降低了16-30%。 CaMKII抑制VGCC功能的特异性由膜渗透性肉豆蔻酰化形式的选择性CaMKII封闭肽autocamtide-2相关抑制肽的功效表明,这也降低了静息神经元中的VGCC电流。 VGCC电流的损失主要是由于N型电流的减少,因为应用mAIP选择性地将N型电流降低了约30%,并且先前的N型电流抑制消除了mAIP对VGCC的影响,而先前的L-类型通道不会降低mAIP对总I-ca的影响。在静息的DRG神经元中,mAIP不会影响T型电流。通过DRG注射表达AIP的腺相关病毒在体内转导感觉神经元,也会导致N型电流的损失。总之,这些发现揭示了一种新型的分子适应性,尽管感觉神经元保持静止,但仍保留了CaMKII对VGCC的支持。由Elsevier Inc.发布

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