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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Calcium channels link the muscle-derived synapse organizer laminin beta2 to Bassoon and CAST/Erc2 to organize presynaptic active zones.
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Calcium channels link the muscle-derived synapse organizer laminin beta2 to Bassoon and CAST/Erc2 to organize presynaptic active zones.

机译:钙通道将肌肉衍生的突触组织素层粘连蛋白beta2与巴松管和CAST / Erc2相连,以组织突触前活动区。

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摘要

Synapse formation requires the organization of presynaptic active zones, the synaptic vesicle release sites, in precise apposition to postsynaptic neurotransmitter receptor clusters; however, the molecular mechanisms responsible for these processes remain unclear. Here, we show that P/Q-type and N-type voltage-dependent calcium channels (VDCCs) play essential roles as scaffolding proteins in the organization of presynaptic active zones. The neuromuscular junction of double knock-out mice for P/Q- and N-type VDCCs displayed a normal size but had significantly reduced numbers of active zones and docked vesicles and featured an attenuation of the active-zone proteins Bassoon, Piccolo, and CAST/Erc2. Consistent with this phenotype, direct interactions of the VDCC beta1b or beta4 subunits and the active zone-specific proteins Bassoon or CAST/Erc2 were confirmed by immunoprecipitation. A decrease in the number of active zones caused by a loss of presynaptic VDCCs resembled the pathological conditions observed in the autoimmune neuromuscular disorder Lambert-Eaton myasthenic syndrome. At the synaptic cleft of double knock-out mice, we also observed a decrease of the synaptic organizer laminin beta2 protein, an extracellular ligand of P/Q- and N-type VDCCs. However, the transcription level of laminin beta2 did not decrease in double knock-out mice, suggesting that the synaptic accumulation of laminin beta2 protein required its interaction with presynaptic VDCCs. These results suggest that presynaptic VDCCs link the target-derived synapse organizer laminin beta2 to active-zone proteins and function as scaffolding proteins to anchor active-zone proteins to the presynaptic membrane.
机译:突触的形成需要突触前活动区,突触小泡释放位点的组织,并精确地与突触后神经递质受体簇结合。然而,导致这些过程的分子机制仍不清楚。在这里,我们显示P / Q型和N型电压依赖性钙离子通道(VDCCs)在突触前活动区的组织中作为支架蛋白起着至关重要的作用。 P / Q型和N型VDCC的双敲除小鼠的神经肌肉接头显示正常大小,但活动区和对接囊泡的数量明显减少,并且活动区蛋白Bassoon,Piccolo和CAST的衰减/ Erc2。与该表型一致,VDCC beta1b或beta4亚基与活性区特异性蛋白Bassoon或CAST / Erc2的直接相互作用通过免疫沉淀得到了证实。由突触前VDCC缺失引起的活动区数量减少类似于在自身免疫性神经肌肉疾病Lambert-Eaton肌无力综合症中观察到的病理状况。在双敲除小鼠的突触裂隙中,我们还观察到突触组织层粘连蛋白β2蛋白(P / Q型和N型VDCC的细胞外配体)减少。但是,在双敲除小鼠中层粘连蛋白β2的转录水平没有降低,这表明层粘连蛋白β2蛋白的突触积累需要其与突触前VDCC的相互作用。这些结果表明,突触前VDCC将靶标衍生的突触组织者层粘连蛋白beta2连接到活性区蛋白,并充当支架蛋白将活性区蛋白锚定在突触前膜上。

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