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昼夜节律钟中钙源对 BK 电流激活的差异贡献。

Differential contribution of Ca sources to day and night BK current activation in the circadian clock.

机构信息

Department of Physiology, University of Maryland School of Medicine, Baltimore, MD.

Department of Physiology, University of Maryland School of Medicine, Baltimore, MD

出版信息

J Gen Physiol. 2018 Feb 5;150(2):259-275. doi: 10.1085/jgp.201711945. Epub 2017 Dec 13.

Abstract

Large conductance K (BK) channels are expressed widely in neurons, where their activation is regulated by membrane depolarization and intracellular Ca (Ca). To enable this regulation, BK channels functionally couple to both voltage-gated Ca channels (VGCCs) and channels mediating Ca release from intracellular stores. However, the relationship between BK channels and their specific Ca source for particular patterns of excitability is not well understood. In neurons within the suprachiasmatic nucleus (SCN)-the brain's circadian clock-BK current, VGCC current, and Ca are diurnally regulated, but paradoxically, BK current is greatest at night when VGCC current and Ca are reduced. Here, to determine whether diurnal regulation of Ca is relevant for BK channel activation, we combine pharmacology with day and night patch-clamp recordings in acute slices of SCN. We find that activation of BK current depends primarily on three types of channels but that the relative contribution changes between day and night. BK current can be abrogated with nimodipine during the day but not at night, establishing that L-type Ca channels (LTCCs) are the primary daytime Ca source for BK activation. In contrast, dantrolene causes a significant decrease in BK current at night, suggesting that nighttime BK activation is driven by ryanodine receptor (RyR)-mediated Ca release. The N- and P/Q-type Ca channel blocker ω-conotoxin MVIIC causes a smaller reduction of BK current that does not differ between day and night. Finally, inhibition of LTCCs, but not RyRs, eliminates BK inactivation, but the BK β2 subunit was not required for activation of BK current by LTCCs. These data reveal a dynamic coupling strategy between BK channels and their Ca sources in the SCN, contributing to diurnal regulation of SCN excitability.

摘要

大电导钙激活钾 (BK) 通道广泛表达于神经元中,其活性受膜去极化和细胞内 Ca (Ca) 的调节。为了实现这种调节,BK 通道与电压门控钙通道 (VGCCs) 和介导细胞内储存 Ca 释放的通道均有功能偶联。然而,BK 通道与其特定 Ca 源之间的关系对于特定兴奋模式尚不完全清楚。在视交叉上核 (SCN)——大脑的生物钟——内的神经元中,BK 电流、VGCC 电流和 Ca 呈昼夜节律性调节,但矛盾的是,当 VGCC 电流和 Ca 降低时,BK 电流在夜间最大。在这里,为了确定 Ca 的昼夜节律性调节是否与 BK 通道的激活有关,我们将药理学与 SCN 急性切片的日间和夜间膜片钳记录相结合。我们发现,BK 电流的激活主要依赖于三种类型的通道,但在日间和夜间的相对贡献会发生变化。在日间,BK 电流可以被尼莫地平阻断,但在夜间则不能,这表明 L 型钙通道 (LTCCs) 是 BK 激活的主要日间 Ca 源。相反,在夜间,丹曲洛林会导致 BK 电流显著降低,表明夜间 BK 激活是由肌质网钙释放受体 (RyR) 介导的 Ca 释放驱动的。N-型和 P/Q-型钙通道阻断剂 ω-芋螺毒素 MVIIC 导致 BK 电流的减少较小,并且在日间和夜间没有差异。最后,LTCCs 的抑制,但不是 RyRs 的抑制,消除了 BK 的失活,但 LTCCs 对 BK 电流的激活并不需要 BK β2 亚基。这些数据揭示了 SCN 中 BK 通道与其 Ca 源之间的动态偶联策略,有助于 SCN 兴奋性的昼夜节律性调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0d1c/5806683/7b42b0077cb9/JGP_201711945_Fig1.jpg

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