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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Dominant role of lipid rafts L-type calcium channel in activity-dependent potentiation of large dense-core vesicle exocytosis.
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Dominant role of lipid rafts L-type calcium channel in activity-dependent potentiation of large dense-core vesicle exocytosis.

机译:脂筏L型钙通道在大密度核心囊泡胞吐作用的活动依赖性增强中的主要作用。

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Calcium influx triggers exocytosis by promoting vesicle fusion with the plasma membrane. However, different subtypes of voltage-gated calcium channel (VGCC) have distinct roles in exocytosis. We previously reported that repetitive stimulation induces activity-dependent potentiation (ADP) which represents the increase of neurotransmitter release. Here, we show that L-type VGCC have a dominant role in ADP of large dense-core vesicle (LDCV) exocytosis. Repetitive stimulation activating VGCC can induce ADP, whereas activation of bradykinin (BK) G protein-coupled receptors or purinergic P2X cation channels can not. L-type VGCC has the dominant role in ADP of LDCV exocytosis by regulating Protein Kinase C (PKC)-epsilon translocation and phosphorylation of myristoylated alanine-rich C kinase substrate (MARCKS), a target molecule of PKC-epsilon. We provide evidence that L-type VGCC, PKC-epsilon, and MARCKS, but not Q-type VGCC, are selectively located in lipid rafts. Also, PKC-epsilon translocation induced by L-type VGCC activation occurs in lipid rafts. Disruption of lipid rafts abolishes ADP of LDCV exocytosis and changes the fusion pore kinetics without affecting the first stimulation-induced exocytosis, showing that lipid rafts are involved in the potentiation process. Taken together, we suggest that L-type VGCC in lipid rafts selectively mediates ADP of LDCV exocytosis by regulating PKC-epsilon translocation and MARCKS phosphorylation.
机译:钙流入通过促进囊泡与质膜融合而触发胞吐作用。但是,电压门控钙通道(VGCC)的不同亚型在胞吐作用中具有不同的作用。我们先前曾报道重复刺激诱导依赖于活性的增强(ADP),代表神经递质释放的增加。在这里,我们显示L型VGCC在ADP的大密集核心囊泡(LDCV)胞吐作用中起主导作用。重复刺激激活VGCC可以诱导ADP,而激活缓激肽(BK)G蛋白偶联受体或嘌呤能P2X阳离子通道则不能。 L型VGCC通过调节蛋白激酶C(PKC)-ε易位和富含肉豆蔻酰化的富含丙氨酸的C激酶底物(MARCKS)(PKC-ε的靶分子)的磷酸化,在LDCV胞吐作用的ADP中起主导作用。我们提供的证据表明,L型VGCC,PKC-ε和MARCKS,而不是Q型VGCC,选择性地位于脂质筏中。此外,由L型VGCC激活诱导的PKC-ε易位发生在脂质筏中。脂筏的破坏消除了LDCV胞吐作用的ADP并改变了融合孔动力学,而没有影响最初的刺激诱导的胞吐作用,表明脂筏参与了增强过程。两者合计,我们建议脂质筏中的L型VGCC通过调节PKC-ε易位和MARCKS磷酸化选择性介导LDCV胞吐作用的ADP。

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