首页> 美国卫生研究院文献>The Journal of Neuroscience >Alternative Splicing in CaV2.2 Regulates Neuronal Trafficking via Adaptor Protein Complex-1 Adaptor Protein Motifs
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Alternative Splicing in CaV2.2 Regulates Neuronal Trafficking via Adaptor Protein Complex-1 Adaptor Protein Motifs

机译:CaV2.2中的选择性剪接通过适配器蛋白复合物1适配器蛋白基元调节神经元运输。

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摘要

N-type voltage-gated calcium (CaV2.2) channels are expressed in neurons and targeted to the plasma membrane of presynaptic terminals, facilitating neurotransmitter release. Here, we find that the adaptor protein complex-1 (AP-1) mediates trafficking of CaV2.2 from the trans-Golgi network to the cell surface. Examination of splice variants of CaV2.2, containing either exon 37a (selectively expressed in nociceptors) or 37b in the proximal C terminus, reveal that canonical AP-1 binding motifs, YxxΦ and [DE]xxxL[LI], present only in exon 37a, enhance intracellular trafficking of exon 37a-containing CaV2.2 to the axons and plasma membrane of rat DRG neurons. Finally, we identify differential effects of dopamine-2 receptor (D2R) and its agonist-induced activation on trafficking of CaV2.2 isoforms. D2R slowed the endocytosis of CaV2.2 containing exon 37b, but not exon 37a, and activation by the agonist quinpirole reversed the effect of the D2R. Our work thus reveals key mechanisms involved in the trafficking of N-type calcium channels.>SIGNIFICANCE STATEMENT CaV2.2 channels are important for neurotransmitter release, but how they are trafficked is still poorly understood. Here, we describe a novel mechanism for trafficking of CaV2.2 from the trans-Golgi network to the cell surface which is mediated by the adaptor protein AP-1. Alternative splicing of exon 37 produces CaV2.2-exon 37a, selectively expressed in nociceptors, or CaV2.2-exon 37b, which is the major splice isoform. Our study reveals that canonical AP-1 binding motifs (YxxΦ and [DE]xxxL[LI]), present in exon 37a, but not 37b, enhance intracellular trafficking of exon 37a-containing CaV2.2 to axons and plasma membrane of DRG neurons. Interaction of APs with CaV2.2 channels may also be key underlying mechanisms for differential effects of the dopamine D2 receptor on trafficking of CaV2.2 splice variants.
机译:N型电压门控钙(CaV2.2)通道在神经元中表达,并靶向突触前末端的质膜,促进神经递质的释放。在这里,我们发现衔接蛋白复合物1(AP-1)介导了CaV2.2从反高尔基网络到细胞表面的运输。检查CaV2.2的剪接变体,在近端C末端包含外显子37a(在伤害感受器中选择性表达)或37b,揭示仅在外显子中存在典型的AP-1结合基序YxxΦ和[DE] xxxL [LI]图37a增强了含有外显子37a的CaV2.2向大鼠DRG神经元的轴突和质膜的细胞内运输。最后,我们确定了多巴胺2受体(D2R)及其激动剂诱导的激活对CaV2.2同工型贩运的不同影响。 D2R减慢了含有外显子37b但不包含外显子37a的CaV2.2的内吞作用,并且激动剂喹吡罗的激活逆转了D2R的作用。因此,我们的工作揭示了参与N型钙通道运输的关键机制。>重要意义声明 CaV2.2通道对于神经递质的释放很重要,但如何贩运仍然知之甚少。在这里,我们描述了一种新的机制,用于将CaV2.2从反高尔基网络运输到细胞表面,这是由衔接蛋白AP-1介导的。外显子37的选择性剪接产生在伤害感受器中选择性表达的CaV2.2-外显子37a或CaV2.2-外显子37b,其是主要的剪接同工型。我们的研究表明,存在于外显子37a中但不存在于37b中的典型AP-1结合基序(YxxΦ和[DE] xxxL [LI])增强了含外显子37a的CaV2.2向DRG神经元的轴突和质膜的细胞内运输。 。 AP与CaV2.2通道的相互作用可能也是多巴胺D2受体对CaV2.2剪接变体运输的不同作用的关键潜在机制。

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