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大鼠海马颗粒细胞中瞬时电压依赖性钾电流的功能与分子分析

Functional and molecular analysis of transient voltage-dependent K+ currents in rat hippocampal granule cells.

作者信息

Riazanski V, Becker A, Chen J, Sochivko D, Lie A, Wiestler O D, Elger C E, Beck H

机构信息

Department of Epileptology, University of Bonn Medical Center, Sigmund-Freud Strasse 25, 53105 Bonn, Germany.

出版信息

J Physiol. 2001 Dec 1;537(Pt 2):391-406. doi: 10.1111/j.1469-7793.2001.00391.x.

Abstract
  1. We have investigated voltage-dependent outward K+ currents of dentate granule cells (DGCs) in acute brain slices from young and adult rats using nucleated and outside-out patch recordings. 2. In adult DGCs, the outward current pattern was dominated by a transient K+ current component. One portion of this current (approximately 60%) was blocked by micromolar concentrations of tetraethylammonium (TEA; IC50 42 microM) and BDS-I, a specific blocker of Kv3.4 subunits (2.5 microM). A second component was insensitive to tetraethylammonium (10 mM) and BDS-I. The transient outward current could be completely blocked by 4-aminopyridine (IC50 296 microM). 3. The TEA- and BDS-I-sensitive and the TEA-resistant current components were isolated pharmacologically. The current component that was blocked by BDS-I and TEA showed a depolarized threshold of activation (approximately -30 mV) reminiscent of Kv3.4 subunits, while the current component resistant to TEA activated at more hyperpolarized potentials (approximately -60 mV). 4. In nucleated patches obtained by placing the patch pipette adjacent to the apical dendrite, only small Na+ currents and small BDS-I-sensitive transient currents were detected. Nucleated patches obtained from either the cell soma (see above) or the axon hillock showed significantly larger amplitude Na+ currents as well as larger BDS-I-sensitive currents, indicating that this current was predominantly localized within the axosomatic compartment. This result was in good agreement with the distribution of Kv3.4 protein as determined by immunohistochemistry. 5. Current-clamp as well as mock action potential-clamp experiments revealed that the BDS-sensitive current component contributes to action potential repolarization. 6. A comparison of the two age groups (4-10 days and 60-100 days) revealed a marked developmental up-regulation of the BDS-I-sensitive component. These functional changes are paralleled by a developmental increase in Kv3.4 mRNA expression determined by quantitative real-time RT-PCR, as well as a pronounced up-regulation of Kv3.4 on the protein level determined by immunohistochemistry. 7. These functional and molecular results argue that Kv3.4 channels located predominantly in the axosomatic compartment underlie a transient K+ current in adult DGCs, and that these channels are functionally important for regulating spike repolarization. The marked developmental regulation suggests an important role of Kv3.4 in neuronal maturation.
摘要
  1. 我们使用有核膜片钳和外向式膜片钳记录技术,研究了幼年和成年大鼠急性脑片齿状颗粒细胞(DGCs)的电压依赖性外向钾离子电流。2. 在成年DGCs中,外向电流模式主要由一个瞬时钾离子电流成分主导。该电流的一部分(约60%)被微摩尔浓度的四乙铵(TEA;IC50为42微摩尔)和BDS-I(一种Kv3.4亚基的特异性阻断剂,2.5微摩尔)阻断。第二个成分对四乙铵(10毫摩尔)和BDS-I不敏感。瞬时外向电流可被4-氨基吡啶完全阻断(IC50为296微摩尔)。3. 通过药理学方法分离出对TEA和BDS-I敏感以及对TEA耐药的电流成分。被BDS-I和TEA阻断的电流成分显示出一个去极化的激活阈值(约-30毫伏),这让人联想到Kv3.4亚基,而对TEA耐药的电流成分在更超极化的电位(约-60毫伏)下激活。4. 在通过将膜片钳吸管置于顶端树突附近获得的有核膜片中,仅检测到小的钠离子电流和小的对BDS-I敏感的瞬时电流。从细胞体(见上文)或轴丘获得的有核膜片显示出明显更大幅度的钠离子电流以及更大的对BDS-I敏感的电流,表明该电流主要定位于轴体区室。这一结果与免疫组织化学测定的Kv3.4蛋白分布非常吻合。5. 电流钳以及模拟动作电位钳实验表明,对BDS敏感的电流成分有助于动作电位复极化。6. 对两个年龄组(4-10天和60-100天)的比较显示,对BDS-I敏感成分有明显的发育上调。这些功能变化与通过定量实时RT-PCR测定的Kv3.4 mRNA表达的发育性增加以及通过免疫组织化学测定的Kv3.4在蛋白水平上的显著上调并行。7. 这些功能和分子结果表明,主要位于轴体区室的Kv3.4通道是成年DGCs中瞬时钾离子电流的基础,并且这些通道在调节峰电位复极化方面具有重要功能。明显的发育调节表明Kv3.4在神经元成熟中起重要作用。

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