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Kv3电压门控钾通道在小鼠视网膜星爆无长突细胞信号传导中的独特作用。

A unique role for Kv3 voltage-gated potassium channels in starburst amacrine cell signaling in mouse retina.

作者信息

Ozaita Ander, Petit-Jacques Jerome, Völgyi Béla, Ho Chi Shun, Joho Rolf H, Bloomfield Stewart A, Rudy Bernardo

机构信息

Department of Physiology and Neuroscience, New York University School of Medicine, New York, New York 10016, USA.

出版信息

J Neurosci. 2004 Aug 18;24(33):7335-43. doi: 10.1523/JNEUROSCI.1275-04.2004.

Abstract

Direction-selective retinal ganglion cells show an increased activity evoked by light stimuli moving in the preferred direction. This selectivity is governed by direction-selective inhibition from starburst amacrine cells occurring during stimulus movement in the opposite or null direction. To understand the intrinsic membrane properties of starburst cells responsible for direction-selective GABA release, we performed whole-cell recordings from starburst cells in mouse retina. Voltage-clamp recordings revealed prominent voltage-dependent K(+) currents. The currents were mostly blocked by 1 mm TEA, activated rapidly at voltages more positive than -20 mV, and deactivated quickly, properties reminiscent of the currents carried by the Kv3 subfamily of K+ channels. Immunoblots confirmed the presence of Kv3.1 and Kv3.2 proteins in retina and immunohistochemistry revealed their expression in starburst cell somata and dendrites. The Kv3-like current in starburst cells was absent in Kv3.1-Kv3.2 knock-out mice. Current-clamp recordings showed that the fast activation of the Kv3 channels provides a voltage-dependent shunt that limits depolarization of the soma to potentials more positive than -20 mV. This provides a mechanism likely to contribute to the electrical isolation of individual starburst cell dendrites, a property thought essential for direction selectivity. This function of Kv3 channels differs from that in other neurons where they facilitate high-frequency repetitive firing. Moreover, we found a gradient in the intensity of Kv3.1b immunolabeling favoring proximal regions of starburst cells. We hypothesize that this Kv3 channel gradient contributes to the preference for centrifugal signal flow in dendrites underlying direction-selective GABA release from starburst amacrine cells

摘要

方向选择性视网膜神经节细胞在光刺激沿其偏好方向移动时,其活动会增强。这种选择性受来自星爆无长突细胞的方向选择性抑制的支配,这种抑制发生在刺激沿相反或无效方向移动时。为了了解负责方向选择性γ-氨基丁酸(GABA)释放的星爆细胞的内在膜特性,我们对小鼠视网膜中的星爆细胞进行了全细胞记录。电压钳记录显示出明显的电压依赖性钾离子电流。这些电流大多被1毫摩尔的四乙铵(TEA)阻断,在电压高于 -20毫伏时迅速激活,并迅速失活,这些特性让人联想到由钾离子通道Kv3亚家族所携带的电流。免疫印迹证实视网膜中存在Kv3.1和Kv3.2蛋白,免疫组织化学显示它们在星爆细胞的胞体和树突中表达。在Kv3.1-Kv3.2基因敲除小鼠中,星爆细胞中不存在类似Kv3的电流。电流钳记录表明,Kv3通道的快速激活提供了一种电压依赖性分流,将胞体的去极化限制在高于 -20毫伏的电位。这提供了一种可能有助于单个星爆细胞树突电隔离的机制,这种特性被认为是方向选择性的关键。Kv3通道的这种功能与其他神经元中促进高频重复放电的功能不同。此外,我们发现Kv3.1b免疫标记强度存在梯度,偏向于星爆细胞的近端区域。我们推测,这种Kv3通道梯度有助于在星爆无长突细胞方向选择性GABA释放基础上的树突中对离心信号流的偏好。

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