Zhou Hong, Kim Seong-Ah, Kirk Elizabeth A, Tippens Alyssa L, Sun Hong, Haeseleer Françoise, Lee Amy
Department of Pharmacology and Center for Neurodegenerative Disease, Emory University School of Medicine, Atlanta, Georgia 30322, USA.
J Neurosci. 2004 May 12;24(19):4698-708. doi: 10.1523/JNEUROSCI.5523-03.2004.
Ca2+-binding protein-1 (CaBP1) is a Ca2+-binding protein that is closely related to calmodulin (CaM) and localized in somatodendritic regions of principal neurons throughout the brain, but how CaBP1 participates in postsynaptic Ca2+ signaling is not known. Here, we describe a novel role for CaBP1 in the regulation of Ca2+ influx through Ca(v)1.2 (L-type) Ca2+ channels. CaBP1 interacts directly with the alpha1 subunit of Ca(v)1.2 at sites that also bind CaM. CaBP1 binding to one of these sites, the IQ domain, is Ca2+ dependent and competitive with CaM binding. The physiological significance of this interaction is supported by the association of Ca(v)1.2 and CaBP1 in postsynaptic density fractions purified from rat brain. Moreover, in double-label immunofluorescence experiments, CaBP1 and Ca(v)1.2 colocalize in numerous cell bodies and dendrites of neurons, particularly in pyramidal cells in the CA3 region of the hippocampus and in the dorsal cortex. In electrophysiological recordings of cells transfected with Ca(v)1.2, CaBP1 greatly prolonged Ca2+ currents, prevented Ca2+-dependent inactivation, and caused Ca2+-dependent facilitation of currents evoked by step depolarizations and repetitive stimuli. These effects contrast with those of CaM, which promoted strong Ca2+-dependent inactivation of Ca(v)1.2 with these same voltage protocols. Our findings reveal how Ca2+-binding proteins, such as CaM and CaBP1, differentially adjust Ca2+ influx through Ca(v)1.2 channels, which may specify diverse modes of Ca2+ signaling in neurons.
钙离子结合蛋白1(CaBP1)是一种与钙调蛋白(CaM)密切相关的钙离子结合蛋白,定位于全脑主要神经元的树突区域,但CaBP1如何参与突触后钙离子信号传导尚不清楚。在此,我们描述了CaBP1在通过Ca(v)1.2(L型)钙离子通道调节钙离子内流方面的新作用。CaBP1在也与CaM结合的位点直接与Ca(v)1.2的α1亚基相互作用。CaBP1与这些位点之一即IQ结构域的结合是钙离子依赖性的,并且与CaM的结合具有竞争性。从大鼠脑纯化的突触后致密部分中Ca(v)1.2和CaBP1的关联支持了这种相互作用的生理意义。此外,在双标记免疫荧光实验中,CaBP1和Ca(v)1.2在神经元的许多细胞体和树突中共定位,特别是在海马CA3区的锥体细胞和背侧皮质中。在用Ca(v)1.2转染的细胞的电生理记录中,CaBP1极大地延长了钙离子电流,阻止了钙离子依赖性失活,并导致了由阶跃去极化和重复刺激诱发的电流的钙离子依赖性易化。这些效应与CaM的效应形成对比,CaM在相同的电压方案下促进了Ca(v)1.2的强烈钙离子依赖性失活。我们的发现揭示了诸如CaM和CaBP1等钙离子结合蛋白如何通过Ca(v)1.2通道差异调节钙离子内流,这可能决定了神经元中钙离子信号传导的多种模式。