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电压依赖性阴离子通道 2 调节心肌细胞静息 Ca²+火花,但不调节动作电位诱导的 Ca²+信号转导。

Voltage-dependent anion channel 2 modulates resting Ca²+ sparks, but not action potential-induced Ca²+ signaling in cardiac myocytes.

机构信息

College of Pharmacy, IDRD, Chungnam National University, 220 Gung-dong, Yuseong-gu, Daejeon 305-764, South Korea.

出版信息

Cell Calcium. 2011 Feb;49(2):136-43. doi: 10.1016/j.ceca.2010.12.004. Epub 2011 Jan 15.

Abstract

Voltage-dependent anion channels (VDACs) are pore forming proteins predominantly found in the outer mitochondrial membrane and are thought to transport Ca(2+). In this study, we have investigated the possible role of type 2 VDAC (VDAC2) in cardiac Ca(2+) signaling and Ca(2+) sparks using a lentiviral knock-down (KD) technique and two-dimensional confocal Ca(2+) imaging in immortalized autorhythmic adult atrial cells, HL-1. We confirmed high expression of VDAC2 protein in ventricular, atrial, and HL-1 cells using Western blot analysis. Infection of HL-1 cells with VDAC2-targeting lentivirus reduced the level of VDAC2 protein to ∼10%. Comparisons of autorhythmic Ca(2+) transients between wild-type (WT) and VDAC2 KD cells showed no significant change in the magnitude, decay, and beating rate of the Ca(2+) transients. Caffeine (10mM)-induced Ca(2+) release, which indicates sarcoplasmic reticulum (SR) Ca(2+) content, was not altered by VDAC2 KD. Interestingly, however, the intensity, width, and duration of the individual Ca(2+) sparks were significantly increased by VDAC2 KD in resting conditions, with no change in the frequency of sparks. VDAC2 KD significantly delayed mitochondrial Ca(2+) uptake during artificial Ca(2+) pulses in permeabilized HL-1 cells. These results suggest that VDAC2 may facilitate mitochondrial Ca(2+) uptake and restrict Ca(2+) spark expansion without regulating activations of sparks under resting conditions, thereby providing evidence on the functional role of VDAC2 in cardiac local Ca(2+) signaling.

摘要

电压依赖性阴离子通道 (VDACs) 是主要存在于线粒体外膜的孔形成蛋白,被认为可转运 Ca(2+)。在这项研究中,我们使用慢病毒敲低 (KD) 技术和二维共聚焦 Ca(2+) 成像,在永生化自主节律性成年心房细胞 HL-1 中,研究了 2 型 VDAC(VDAC2)在心脏 Ca(2+) 信号转导和 Ca(2+) 火花中的可能作用。我们使用 Western blot 分析证实了 VDAC2 蛋白在心室、心房和 HL-1 细胞中的高表达。HL-1 细胞感染靶向 VDAC2 的慢病毒,将 VDAC2 蛋白水平降低至约 10%。在 WT 和 VDAC2 KD 细胞之间比较自主节律性 Ca(2+) 瞬变,发现 Ca(2+) 瞬变的幅度、衰减和搏动率没有显著变化。咖啡因(10mM)诱导的 Ca(2+) 释放,表明肌浆网 (SR) Ca(2+) 含量,在 VDAC2 KD 时没有改变。然而,有趣的是,在静息状态下,VDAC2 KD 显著增加了单个 Ca(2+) 火花的强度、宽度和持续时间,而火花频率没有变化。VDAC2 KD 显著延迟了在通透 HL-1 细胞中人工 Ca(2+) 脉冲期间的线粒体 Ca(2+) 摄取。这些结果表明,VDAC2 可能促进线粒体 Ca(2+) 摄取,并限制 Ca(2+) 火花的扩展,而在静息状态下不调节火花的激活,从而为 VDAC2 在心脏局部 Ca(2+) 信号转导中的功能作用提供了证据。

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