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Axonal Localization of Ca2+-Dependent Activator Protein for Secretion 2 Is Critical for Subcellular Locality of Brain-Derived Neurotrophic Factor and Neurotrophin-3 Release Affecting Proper Development of Postnatal Mouse Cerebellum

机译:分泌2的依赖于Ca2 +的活化蛋白的轴突定位对于影响脑源性神经营养因子和Neurotrophin-3释放的亚细胞局部性至关重要这会影响出生后小鼠小脑的正常发育。

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摘要

Ca2+-dependent activator protein for secretion 2 (CAPS2) is a protein that is essential for enhanced release of brain-derived neurotrophic factor (BDNF) and neurotrophin-3 (NT-3) from cerebellar granule cells. We previously identified dex3, a rare alternative splice variant of CAPS2, which is overrepresented in patients with autism and is missing an exon 3 critical for axonal localization. We recently reported that a mouse model CAPS2Δex3/Δex3 expressing dex3 showed autistic-like behavioral phenotypes including impaired social interaction and cognition and increased anxiety in an unfamiliar environment. Here, we verified impairment in axonal, but not somato-dendritic, localization of dex3 protein in cerebellar granule cells and demonstrated cellular and physiological phenotypes in postnatal cerebellum of CAPS2Δex3/Δex3 mice. Interestingly, both BDNF and NT-3 were markedly reduced in axons of cerebellar granule cells, resulting in a significant decrease in their release. As a result, dex3 mice showed developmental deficits in dendritic arborization of Purkinje cells, vermian lobulation and fissurization, and granule cell precursor proliferation. Paired-pulse facilitation at parallel fiber-Purkinje cell synapses was also impaired. Together, our results indicate that CAPS2 plays an important role in subcellular locality (axonal vs. somato-dendritic) of enhanced BDNF and NT-3 release, which is indispensable for proper development of postnatal cerebellum.
机译:Ca 2 + 依赖性分泌蛋白2(CAPS2)是增强小脑颗粒释放脑源性神经营养因子(BDNF)和Neurotrophin-3(NT-3)所必需的蛋白细胞。我们之前确定了dex3,这是CAPS2的罕见替代剪接变体,在自闭症患者中过分表达,并且缺少对轴突定位至关重要的外显子3。最近,我们报道说,表达dex3的CAPS2 Δex3/Δex3小鼠模型表现出自闭症样的行为表型,包括社交互动和认知受损,以及在陌生环境中的焦虑增加。在这里,我们验证了小脑颗粒细胞中dex3蛋白在轴突而非体树突状细胞中的定位受损,并证实了CAPS2 Δex3/Δex3小鼠出生后小脑的细胞和生理表型。有趣的是,小脑颗粒细胞轴突中的BDNF和NT-3均显着减少,导致其释放显着减少。结果,dex3小鼠在Purkinje细胞的树突状乔木化,Vermian小叶化和裂变化以及颗粒细胞前体增殖中显示出发育缺陷。平行纤维-浦肯野细胞突触的成对脉冲促进也受到损害。在一起,我们的结果表明,CAPS2在增强的BDNF和NT-3释放的亚细胞局部(轴突或体树突状细胞)中起重要作用,这对于出生后小脑的正常发育必不可少。

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