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CaMKIIγ(C)对重组Ca(v)3.2 T型Ca(2+)通道电流的刺激作用

Stimulation of recombinant Ca(v)3.2, T-type, Ca(2+) channel currents by CaMKIIgamma(C).

作者信息

Wolfe Joshua T, Wang Hongge, Perez-Reyes Edward, Barrett Paula Q

机构信息

Department of Pharmacology, University of Virginia School of Medicine, Charlottesville, VA 22908, USA.

出版信息

J Physiol. 2002 Jan 15;538(Pt 2):343-55. doi: 10.1113/jphysiol.2001.012839.

Abstract

Molecular cloning of low-voltage activated (LVA) T-type calcium channels has enabled the study of their regulation in heterologous expression systems. Here we investigate the regulation of Ca(v)3.2 alpha(1)-subunits (alpha1H) by calcium- and/or calmodulin-dependent protein kinase II (CaMKII). 293 cells stably expressing alpha1H were transiently transfected with CaMKIIgamma(C). Using the whole-cell recording configuration, we observed that elevation of pipette free Ca(2+) (1 microM) in the presence of CaM (2 microM) increases T-type channel activity selectively at negative potentials, evoking an 11 mV hyperpolarizing shift in the half-maximal potential (V(1/2)) for activation. The V(1/2) of channel inactivation is not altered by Ca(2+)/CaM. These effects reproduced modulation observed in adrenal zona glomerulosa cells. The potentiation by Ca(2+)/CaM was dependent on the co-expression of CaMKIIgamma(C) and required Ca(2+)/CaM-dependent kinase activity. Peptide (AIP) and lipophilic (KN-62) protein kinase inhibitors prevented the Ca(2+)/CaM-induced changes in channel gating without altering basal Ca(v)3.2 channel activity (27 nM free Ca(2+)) as did replacing pipette ATP with adenylyl imidodiphosphate (AMP-PNP), a non-hydrolysable analogue. CaMKII-dependent potentiation of channel opening resulted in significant increases in apparent steady-state open probability (P(o)) and sustained channel current at negative voltages. Under identical conditions, CaMKII activation did not regulate the activity of Ca(v)3.1 channels, the first cloned member (alpha1G) of the T-type Ca(2+) channel family. Our results provide the first evidence for the differential regulation of two members of the Ca(v)3 family by protein kinase activation and the first report reconstituting CaMKII-dependent regulation of any cloned Ca(2+) channel.

摘要

低电压激活(LVA)T型钙通道的分子克隆使得在异源表达系统中研究其调节成为可能。在此,我们研究钙和/或钙调蛋白依赖性蛋白激酶II(CaMKII)对Ca(v)3.2 α1亚基(α1H)的调节作用。稳定表达α1H的293细胞被瞬时转染了CaMKIIγ(C)。使用全细胞记录模式,我们观察到在存在钙调蛋白(2 μM)的情况下,移液管游离钙(1 μM)升高会选择性地在负电位下增加T型通道活性,使激活的半数最大电位(V(1/2))出现11 mV的超极化偏移。通道失活的V(1/2)不受Ca(2+)/CaM影响。这些效应重现了在肾上腺球状带细胞中观察到的调节作用。Ca(2+)/CaM的增强作用依赖于CaMKIIγ(C)的共表达,并且需要Ca(2+)/CaM依赖性激酶活性。肽(AIP)和亲脂性(KN-62)蛋白激酶抑制剂可阻止Ca(2+)/CaM诱导的通道门控变化,而不改变基础Ca(v)3.2通道活性(游离钙27 nM),用不可水解类似物腺苷酰亚胺二磷酸(AMP-PNP)替代移液管中的ATP也有同样效果。CaMKII依赖性的通道开放增强导致明显的稳态开放概率(P(o))显著增加以及在负电压下持续的通道电流增加。在相同条件下,CaMKII激活并未调节Ca(v)3.1通道的活性,Ca(v)3.1通道是T型钙通道家族的首个克隆成员(α1G)。我们的结果首次证明了蛋白激酶激活对Ca(v)3家族两个成员的差异调节,也是首次报道重建任何克隆钙通道的CaMKII依赖性调节。

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