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KCNE2 对超极化激活的环核苷酸门控(HCN)亚型的影响:对膜表达和单通道特性的不同调节

Effects of KCNE2 on HCN isoforms: distinct modulation of membrane expression and single channel properties.

作者信息

Brandt Mathias C, Endres-Becker Jeannette, Zagidullin Naufal, Motloch Lukas J, Er Fikret, Rottlaender Dennis, Michels Guido, Herzig Stefan, Hoppe Uta C

机构信息

Department of Internal Medicine III, University of Cologne, Cologne, Germany.

出版信息

Am J Physiol Heart Circ Physiol. 2009 Jul;297(1):H355-63. doi: 10.1152/ajpheart.00154.2009. Epub 2009 May 8.

Abstract

Hyperpolarization-activated cation (HCN) channels give rise to an inward current with similar but not identical characteristics compared with the pacemaker current (I(f)), suggesting that HCN channel function is modulated by regulatory beta-subunits in native tissue. KCNE2 has been proposed to serve as a beta-subunit of HCN channels; however, available data remain contradictory. To further clarify this situation, we therefore analyzed the effect of KCNE2 on whole cell currents, single channel properties, and membrane protein expression of all cardiac HCN isoforms in the CHO cell system. On the whole cell level, current densities of all HCN isoforms were significantly increased by KCNE2 without altering voltage dependence or current reversal. While these results correlated well with the KCNE2-mediated 2.2-fold and 1.6-fold increases of membrane protein levels of HCN2 and HCN4, respectively, no effect of KCNE2 on HCN1 expression was obtained. All HCN subtypes displayed faster activation kinetics upon coexpression with KCNE2. Most importantly, for the first time, we demonstrated modulation of single channel function by KCNE2, thus supporting direct functional interaction with HCN subunits. In the presence of KCNE2, the single channel amplitudes and conductance of HCN1, HCN2, and HCN4 were significantly increased versus control recordings. Mean open time was significantly increased in cells coexpressing HCN2 + KCNE2, whereas it was unaffected in HCN1 + KCNE2 cotransfected cells and reduced in HCN4 + KCNE2 cotransfected cells compared with the respective HCN subunits alone. Thus, we demonstrate KCNE2-mediated distinct effects on HCN membrane expression and direct functional modulation of HCN isoforms, further supporting that KCNE2 surves as a regulatory beta-subunit of HCN channels.

摘要

超极化激活阳离子(HCN)通道产生一种内向电流,与起搏电流(I(f))相比,其特性相似但不完全相同,这表明HCN通道功能在天然组织中受到调节性β亚基的调控。有人提出KCNE2可作为HCN通道的β亚基;然而,现有数据仍相互矛盾。因此,为了进一步阐明这种情况,我们在CHO细胞系统中分析了KCNE2对所有心脏HCN亚型的全细胞电流、单通道特性和膜蛋白表达的影响。在全细胞水平上,KCNE2显著增加了所有HCN亚型的电流密度,而不改变电压依赖性或电流反转。虽然这些结果与KCNE2介导的HCN2和HCN4膜蛋白水平分别增加2.2倍和1.6倍密切相关,但未观察到KCNE2对HCN1表达有影响。与KCNE2共表达时,所有HCN亚型均表现出更快的激活动力学。最重要的是,我们首次证明了KCNE2对单通道功能的调节作用,从而支持其与HCN亚基的直接功能相互作用。在存在KCNE2的情况下,与对照记录相比,HCN1、HCN2和HCN4的单通道幅度和电导显著增加。共表达HCN2 + KCNE2的细胞中平均开放时间显著增加,而与单独表达各自的HCN亚基相比,共转染HCN1 + KCNE2的细胞中平均开放时间未受影响,共转染HCN4 + KCNE2的细胞中平均开放时间缩短。因此,我们证明了KCNE2对HCN膜表达有明显影响,并对HCN亚型有直接功能调节作用,进一步支持KCNE2作为HCN通道的调节性β亚基。

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