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BK 通道介导活体小鼠视网膜中视觉信号的通路特异性调制。

BK channels mediate pathway-specific modulation of visual signals in the in vivo mouse retina.

机构信息

Division of Ocular Neurodegeneration, Centre for Ophthalmology, Institute for Ophthalmic Research, University of Tuebingen, 72076 Tuebingen, Germany.

出版信息

J Neurosci. 2012 Apr 4;32(14):4861-6. doi: 10.1523/JNEUROSCI.4654-11.2012.

Abstract

The modulatory role of large-conductance Ca(2+)-activated K(+) (BK) channels in the nervous system has been extensively studied. In the retina, it has been shown that BK channels play a pivotal role in modulating feedback from A17 amacrine cells to rod bipolar cells (RBCs). Here, we used electroretinography to examine the functional role of BK channels for rod and cone vision in the retina in vivo using a genetically engineered mouse lacking functional BK channels (Bk(-/-)). Under dark-adapted and light-adapted conditions, the lack of BK channels had no effect on photoreceptor activity, suggesting that these ion channels do not modulate photoreceptor responses. At the bipolar cell level, the ERG signals attributed to RBCs in Bk(-/-) mice were not different from those in wild-type mice at low scotopic stimulus intensities. However, at high scotopic and low mesopic stimulus intensities, close to RBC saturation, a significant reduction of ERG signals reflecting RBC activity was present in the Bk(-/-) retina. At higher mesopic stimulus intensities activating both RBCs and cone bipolar cells (CBCs), no difference in ERG signals between Bk(-/-) and wild-type mice was found. In photopic stimulus paradigms, activity of ON- and OFF-CBCs in Bk(-/-) and wild-type retinae was indistinguishable. These findings demonstrate that BK channels modulate visual responses in vivo at the bipolar cell level at intermediate stimulus conditions.

摘要

大电导钙激活钾(BK)通道在神经系统中的调节作用已经得到了广泛的研究。在视网膜中,已经表明 BK 通道在调节 A17 无长突细胞向杆状双极细胞(RBC)的反馈中起着关键作用。在这里,我们使用视网膜电图(ERG)在体内使用缺乏功能性 BK 通道(Bk(-/-))的基因工程小鼠来检查 BK 通道对杆状和锥状视觉的功能作用。在暗适应和明适应条件下,缺乏 BK 通道对光感受器活性没有影响,表明这些离子通道不会调节光感受器的反应。在双极细胞水平,Bk(-/-)小鼠中的 RBC 产生的 ERG 信号与野生型小鼠在低暗适应刺激强度下没有差异。然而,在高暗适应和低中间适应刺激强度下,接近 RBC 饱和时,Bk(-/-)视网膜中 RBC 活性的 ERG 信号显著减少。在较高的中间适应刺激强度下,激活 RBC 和锥状双极细胞(CBC)时,Bk(-/-)和野生型小鼠之间的 ERG 信号没有差异。在明适应刺激模式下,Bk(-/-)和野生型视网膜中 ON 和 OFF-CBC 的活性无法区分。这些发现表明,BK 通道在中间刺激条件下调节体内双极细胞水平的视觉反应。

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