Marrion N V, Tavalin S J
Vollum Institute, Oregon Health Sciences University Portland, 97201, USA.
Nature. 1998 Oct 29;395(6705):900-5. doi: 10.1038/27674.
Calcium entry through voltage-gated calcium channels can activate either large- (BK) or small- (SK) conductance calcium-activated potassium channels. In hippocampal neurons, activation of BK channels underlies the falling phase of an action potential and generation of the fast afterhyperpolarization (AHP). In contrast, SK channel activation underlies generation of the slow AHP after a burst of action potentials. The source of calcium for BK channel activation is unknown, but the slow AHP is blocked by dihydropyridine antagonists, indicating that L-type calcium channels provide the calcium for activation of SK channels. It is not understood how this specialized coupling between calcium and potassium channels is achieved. Here we study channel activity in cell-attached patches from hippocampal neurons and report a unique specificity of coupling. L-type channels activate SK channels only, without activating BK channels present in the same patch. The delay between the opening of L-type channels and SK channels indicates that these channels are 50-150 nm apart. In contrast, N-type calcium channels activate BK channels only, with opening of the two channel types being nearly coincident. This temporal association indicates that N and BK channels are very close. Finally, P/Q-type calcium channels do not couple to either SK or BK channels. These data indicate an absolute segregation of coupling between channels, and illustrate the functional importance of submembrane calcium microdomains.
通过电压门控钙通道进入的钙离子可激活大电导(BK)或小电导(SK)钙激活钾通道。在海马神经元中,BK通道的激活是动作电位下降期和快速超极化后电位(AHP)产生的基础。相反,SK通道的激活是动作电位爆发后慢AHP产生的基础。BK通道激活的钙来源尚不清楚,但慢AHP可被二氢吡啶拮抗剂阻断,这表明L型钙通道为SK通道的激活提供钙离子。目前尚不清楚钙通道与钾通道之间这种特殊的偶联是如何实现的。在这里,我们研究了海马神经元细胞贴附膜片上的通道活性,并报告了一种独特的偶联特异性。L型通道仅激活SK通道,而不激活同一膜片中存在的BK通道。L型通道与SK通道开放之间的延迟表明这两种通道相距50 - 150纳米。相反,N型钙通道仅激活BK通道,两种通道类型的开放几乎同时发生。这种时间上的关联表明N型通道与BK通道非常接近。最后,P/Q型钙通道不与SK或BK通道偶联。这些数据表明通道之间的偶联存在绝对的分隔,并说明了膜下钙微区的功能重要性。