Yan Jin, Leal Karina, Magupalli Venkat G, Nanou Evanthia, Martinez Gilbert Q, Scheuer Todd, Catterall William A
Mol Cell Neurosci. 2014 Nov;63:124-31. doi: 10.1016/j.mcn.2014.11.001.
Facilitation and inactivation of P/Q-type Ca2+ currents mediated by Ca2+/calmodulin binding to Ca(V)2.1 channels contribute to facilitation and rapid depression of synaptic transmission, respectively. Other calcium sensor proteins displace calmodulin from its binding site and differentially modulate P/Q-type Ca2 + currents, resulting in diverse patterns of short-term synaptic plasticity. Neuronal calcium sensor-1 (NCS-1, frequenin) has been shown to enhance synaptic facilitation, but the underlying mechanism is unclear. We report here that NCS-1 directly interacts with IQ-like motif and calmodulin-binding domain in the C-terminal domain of Ca(V)2.1 channel. NCS-1 reduces Ca2 +-dependent inactivation of P/Q-type Ca2+ current through interaction with the IQ-like motif and calmodulin-binding domain without affecting peak current or activation kinetics. Expression of NCS-1 in presynaptic superior cervical ganglion neurons has no effect on synaptic transmission, eliminating effects of this calcium sensor protein on endogenous N-type Ca2+ currents and the endogenous neurotransmitter release machinery. However, in superior cervical ganglion neurons expressing wild-type Ca(V)2.1 channels, co-expression of NCS-1 induces facilitation of synaptic transmission in response to paired pulses and trains of depolarizing stimuli, and this effect is lost in Ca(V)2.1 channels with mutations in the IQ-like motif and calmodulin-binding domain. These results reveal that NCS-1 directly modulates Ca(V)2.1 channels to induce short-term synaptic facilitation and further demonstrate that CaS proteins are crucial in fine-tuning short-term synaptic plasticity.
由 Ca2+/钙调蛋白结合到 Ca(V)2.1 通道介导的 P/Q 型 Ca2+电流的易化和失活,分别促成了突触传递的易化和快速抑制。其他钙传感蛋白将钙调蛋白从其结合位点上置换下来,并差异性地调节 P/Q 型 Ca2+电流,从而导致短期突触可塑性的多样模式。神经元钙传感器-1(NCS-1,频率蛋白)已被证明可增强突触易化,但潜在机制尚不清楚。我们在此报告,NCS-1 直接与 Ca(V)2.1 通道 C 末端结构域中的 IQ 样基序和钙调蛋白结合结构域相互作用。NCS-1 通过与 IQ 样基序和钙调蛋白结合结构域相互作用,减少了 P/Q 型 Ca2+电流的 Ca2+依赖性失活,而不影响峰值电流或激活动力学。在突触前颈上神经节神经元中表达 NCS-1 对突触传递没有影响,排除了这种钙传感蛋白对内源性 N 型 Ca2+电流和内源性神经递质释放机制的影响。然而,在表达野生型 Ca(V)2.1 通道的颈上神经节神经元中,NCS-1 的共表达会在响应成对脉冲和去极化刺激串时诱导突触传递的易化,而在 IQ 样基序和钙调蛋白结合结构域发生突变的 Ca(V)2.1 通道中这种效应消失。这些结果揭示,NCS-1 直接调节 Ca(V)2.1 通道以诱导短期突触易化,并进一步证明钙传感蛋白在微调短期突触可塑性中至关重要。