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Functional Roles of a C-terminal Signaling Complex of CaV1 Channels and A-kinase Anchoring Protein 15 in Brain Neurons*

机译:CaV1通道C末端信号复合物和A激酶锚定蛋白15在脑神经元中的功能作用*

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摘要

Regulation of CaV1.2 channels in cardiac myocytes by the β-adrenergic pathway requires a signaling complex in which the proteolytically processed distal C-terminal domain acts as an autoinhibitor of channel activity and mediates up-regulation by the β-adrenergic receptor and PKA bound to A-kinase anchoring protein 15 (AKAP15). We examined the significance of this distal C-terminal signaling complex for CaV1.2 and CaV1.3 channels in neurons. AKAP15 co-immunoprecipitates with CaV1.2 and CaV1.3 channels. AKAP15 has overlapping localization with CaV1.2 and CaV1.3 channels in cell bodies and proximal dendrites and is closely co-localized with CaV1.2 channels in punctate clusters. The neuronal AKAP MAP2B, which also interacts with CaV1.2 and CaV1.3 channels, has complementary localization to AKAP15, suggesting different functional roles in calcium channel regulation. Studies with mice that lack the distal C-terminal domain of CaV1.2 channels (CaV1.2ΔDCT) reveal that AKAP15 interacts with neuronal CaV1.2 channels via their C terminus in vivo and is co-localized in punctate clusters of CaV1.2 channels via that interaction. CaV1.2ΔDCT neurons have reduced L-type calcium current, indicating that the distal C-terminal domain is required for normal functional expression in vivo. Deletion of the distal C-terminal domain impairs calcium-dependent signaling from CaV1.2 channels to the nucleus, as shown by reduction in phosphorylation of the cAMP response element-binding protein. Our results define AKAP signaling complexes of CaV1.2 and CaV1.3 channels in brain and reveal three previously unrecognized functional roles for the distal C terminus of neuronal CaV1.2 channels in vivo: increased functional expression, anchoring of AKAP15 and PKA, and initiation of excitation-transcription coupling.
机译:通过β-肾上腺素途径调节心肌细胞中CaV1.2通道需要一个信号复合物,其中蛋白水解处理的远端C末端结构域充当通道活性的自抑制剂,并介导β-肾上腺素受体和PKA结合的上调A激酶锚定蛋白15(AKAP15)。我们检查了神经元中CaV1.2和CaV1.3通道的远端C末端信号复合物的重要性。 AKAP15与CaV1.2和CaV1.3通道共同免疫沉淀。 AKAP15在细胞体和近端树突中的CaV1.2和CaV1.3通道具有重叠的定位,并且在点状簇中与CaV1.2通道紧密共定位。也与CaV1.2和CaV1.3通道相互作用的神经元AKAP MAP2B具有与AKAP15互补的定位,提示在钙通道调节中的功能不同。对缺少CaV1.2通道远端C末端结构域(CaV1.2ΔDCT)的小鼠进行的研究表明,AKAP15在体内通过其C末端与神经元CaV1.2通道相互作用,并且共定位于CaV1.2通道的点状簇中通过这种互动。 CaV1.2ΔDCT神经元具有降低的L型钙电流,表明在体内正常功能表达需要远端C末端结构域。远端C末端结构域的缺失削弱了CaV1.2通道至细胞核的钙依赖性信号传导,如cAMP反应元件结合蛋白磷酸化的降低所表明。我们的研究结果定义了大脑中CaV1.2和CaV1.3通道的AKAP信号复合物,并揭示了体内神经元CaV1.2通道的远端C末端的三个先前未被认识的功能性作用:功能性表达增强,AKAP15和PKA的锚定和启动-转录-偶联反应。

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