Xu Jian Wei, Slaughter Malcolm M
Department of Physiology and Biophysics, State University of New York, Buffalo, New York 14214, USA.
J Neurosci. 2005 Aug 17;25(33):7660-8. doi: 10.1523/JNEUROSCI.1572-05.2005.
Large-conductance calcium-activated potassium (BK) channels are colocalized with calcium channels at sites of exocytosis at the presynaptic terminals throughout the nervous system. It is expected that their activation would provide negative feedback to transmitter release, but the opposite is sometimes observed. Attempts to resolve this apparent paradox based on alterations in action potential waveform have been ambiguous. In an alternative approach, we investigated the influence of this channel on neurotransmitter release in a nonspiking neuron, the salamander rod photoreceptors. Surprisingly, the BK channel facilitates calcium-mediated transmitter release from rods. The two presynaptic channels form a positive coupled loop. Calcium influx activates the BK channel current, leading to potassium efflux that increases the calcium current. The normal physiological voltage range of the rod is well matched to the dynamics of this positive loop. When the rod is further depolarized, then the hyperpolarizing BK channel current exceeds its facilitatory effect, causing truncation of transmitter release. Thus, the calcium channel-BK channel linkage performs two functions at the synapse: nonlinear potentiator and safety brake.
大电导钙激活钾(BK)通道与钙通道在整个神经系统突触前终末的胞吐部位共定位。预计它们的激活会对神经递质释放提供负反馈,但有时会观察到相反的情况。基于动作电位波形改变来解决这一明显矛盾的尝试并不明确。在另一种方法中,我们研究了该通道对非尖峰神经元——蝾螈视杆光感受器中神经递质释放的影响。令人惊讶的是,BK通道促进了视杆中钙介导的神经递质释放。这两个突触前通道形成了一个正耦合环。钙内流激活BK通道电流,导致钾外流增加钙电流。视杆的正常生理电压范围与这个正环的动力学非常匹配。当视杆进一步去极化时,超极化的BK通道电流超过其促进作用,导致神经递质释放被截断。因此,钙通道 - BK通道连接在突触处执行两种功能:非线性增强器和安全制动器。