Jiang Xin, Lautermilch Nathan J, Watari Hirofumi, Westenbroek Ruth E, Scheuer Todd, Catterall William A
Department of Pharmacology, University of Washington, Mailstop 357280, Seattle, WA 98195-7280, USA.
Proc Natl Acad Sci U S A. 2008 Jan 8;105(1):341-6. doi: 10.1073/pnas.0710213105. Epub 2007 Dec 27.
Ca(2+)/calmodulin-dependent protein kinase II (CaMKII) is a key regulator of synaptic responses in the postsynaptic density, but understanding of its mechanisms of action in the presynaptic neuron is incomplete. Here we show that CaMKII constitutively associates with and modulates voltage-gated calcium (Ca(V))2.1 channels that conduct P/Q type Ca(2+) currents and initiate transmitter release. Both exogenous and brain-specific inhibitors of CaMKII accelerate voltage-dependent inactivation, cause a negative shift in the voltage dependence of inactivation, and reduce Ca(2+)-dependent facilitation of Ca(V)2.1 channels. The modulatory effects of CaMKII are reduced by a peptide that prevents binding to Ca(V)2.1 channels but not by a peptide that blocks catalytic activity, suggesting that binding rather than phosphorylation is responsible for modulation. Our results reveal a signaling complex formed by Ca(V)2.1 channels and CaMKII that regulates P/Q-type Ca(2+) current in neurons. We propose an "effector checkpoint" model for the control of Ca(2+) channel fitness for function that depends on association with CaMKII, SNARE proteins, and other effectors of Ca(2+) signals. This regulatory mechanism would be important in presynaptic nerve terminals, where Ca(V)2.1 channels initiate synaptic transmission and CaMKII has noncatalytic effects on presynaptic plasticity.
钙/钙调蛋白依赖性蛋白激酶II(CaMKII)是突触后致密区突触反应的关键调节因子,但对其在突触前神经元中的作用机制尚不完全清楚。在此我们表明,CaMKII持续与传导P/Q型钙电流并启动递质释放的电压门控钙(Ca(V))2.1通道结合并对其进行调节。CaMKII的外源性抑制剂和脑特异性抑制剂均可加速电压依赖性失活,使失活的电压依赖性发生负向偏移,并减少Ca(V)2.1通道的钙依赖性易化作用。一种可阻止与Ca(V)2.1通道结合的肽可降低CaMKII的调节作用,但一种可阻断催化活性的肽则无此作用,这表明调节作用是由结合而非磷酸化介导的。我们的结果揭示了一种由Ca(V)2.1通道和CaMKII形成的信号复合物,该复合物可调节神经元中的P/Q型钙电流。我们提出了一种“效应器检查点”模型,用于控制钙通道的功能适应性,该模型依赖于与CaMKII、SNARE蛋白及其他钙信号效应器的结合。这种调节机制在突触前神经末梢中很重要,因为Ca(V)2.1通道在其中启动突触传递,而CaMKII对突触前可塑性具有非催化作用。