Tippens Alyssa L, Lee Amy
Department of Pharmacology, Center for Neurodegenerative Disease, Emory University School of Medicine, Atlanta, Georgia 30322, USA.
J Biol Chem. 2007 Mar 16;282(11):8464-73. doi: 10.1074/jbc.M611384200. Epub 2007 Jan 15.
EF-hand Ca2+-binding proteins such as calmodulin and CaBP1 have emerged as important regulatory subunits of voltage-gated Ca2+ channels. Here, we show that caldendrin, a variant of CaBP1 enriched in the brain, interacts with and distinctly modulates Cav1.2 (L-type) voltage-gated Ca2+ channels relative to other Ca2+-binding proteins. Caldendrin binds to the C-terminal IQ-domain of the pore-forming alpha1-subunit of Cav1.2 (alpha(1)1.2) and competitively displaces calmodulin and CaBP1 from this site. Compared with CaBP1, caldendrin causes a more modest suppression of Ca2+-dependent inactivation of Cav1.2 through a different subset of molecular determinants. Caldendrin does not bind to the N-terminal domain of alpha11.2, a site that is critical for functional interactions of the channel with CaBP1. Deletion of the N-terminal domain inhibits CaBP1, but spares caldendrin modulation of Cav1.2 inactivation. In contrast, mutations of the IQ-domain abolish physical and functional interactions of caldendrin and Cav1.2, but do not prevent channel modulation by CaBP1. Using antibodies specific for caldendrin and Cav1.2, we show that caldendrin coimmunoprecipitates with Cav1.2 from the brain and colocalizes with Cav1.2 in somatodendritic puncta of cortical neurons in culture. Our findings reveal functional diversity within related Ca2+-binding proteins, which may enhance the specificity of Ca2+ signaling by Cav1.2 channels in different cellular contexts.
诸如钙调蛋白和CaBP1等EF手型钙离子结合蛋白已成为电压门控钙离子通道的重要调节亚基。在此,我们表明,在大脑中富集的CaBP1变体钙树突蛋白与Cav1.2(L型)电压门控钙离子通道相互作用,并相对于其他钙离子结合蛋白对其进行独特的调节。钙树突蛋白与Cav1.2孔形成α1亚基(α(1)1.2)的C末端IQ结构域结合,并竞争性地从该位点取代钙调蛋白和CaBP1。与CaBP1相比,钙树突蛋白通过不同的分子决定因素子集对Cav1.2的钙离子依赖性失活产生更适度的抑制作用。钙树突蛋白不与α11.2的N末端结构域结合,该位点对于通道与CaBP1的功能相互作用至关重要。删除N末端结构域会抑制CaBP1,但不会影响钙树突蛋白对Cav1.2失活的调节。相反,IQ结构域的突变消除了钙树突蛋白与Cav1.2的物理和功能相互作用,但不会阻止CaBP1对通道的调节。使用针对钙树突蛋白和Cav1.2的特异性抗体,我们表明钙树突蛋白与大脑中的Cav1.2共免疫沉淀,并与培养的皮质神经元的树突棘中的Cav1.2共定位。我们的研究结果揭示了相关钙离子结合蛋白内的功能多样性,这可能会增强不同细胞环境中Cav1.2通道钙离子信号传导的特异性。