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首页> 外文期刊>Frontiers in Cellular Neuroscience >The Endosome Localized Arf-GAP AGAP1 Modulates Dendritic Spine Morphology Downstream of the Neurodevelopmental Disorder Factor Dysbindin
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The Endosome Localized Arf-GAP AGAP1 Modulates Dendritic Spine Morphology Downstream of the Neurodevelopmental Disorder Factor Dysbindin

机译:内体局部Arf-GAP AGAP1调节神经发育障碍因子Dysbindin下游的树突棘形态

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摘要

AGAP1 is an Arf1 GTPase activating protein that interacts with the vesicle-associated protein complexes adaptor protein 3 (AP-3) and B iogenesis of L ysosome Related O rganelles C omplex- 1 (BLOC-1). Overexpression of AGAP1 in non-neuronal cells results in an accumulation of endosomal cargoes, which suggests a role in endosome-dependent traffic. In addition, AGAP1 is a candidate susceptibility gene for two neurodevelopmental disorders, autism spectrum disorder (ASD) and schizophrenia (SZ); yet its localization and function in neurons have not been described. Here, we describe that AGAP1 localizes to axons, dendrites, dendritic spines and synapses, colocalizing preferentially with markers of early and recycling endosomes. Functional studies reveal overexpression and down-regulation of AGAP1 affects both neuronal endosomal trafficking and dendritic spine morphology, supporting a role for AGAP1 in the recycling endosomal trafficking involved in their morphogenesis. Finally, we determined the sensitivity of AGAP1 expression to mutations in the DTNBP1 gene, which is associated with neurodevelopmental disorder, and found that AGAP1 mRNA and protein levels are selectively reduced in the null allele of the mouse ortholog of DTNBP1 . We postulate that endosomal trafficking contributes to the pathogenesis of neurodevelopmental disorders affecting dendritic spine morphology, and thus excitatory synapse structure and function.
机译:AGAP1是一种Arf1 GTP酶激活蛋白,可与囊泡相关蛋白复合体衔接蛋白3(AP-3)和L脂质体相关器官复合体1(BLOC-1)的生物发生相互作用。 AGAP1在非神经元细胞中的过表达导致内体货物的积累,这提示其在依赖内体的运输中起作用。此外,AGAP1是两种神经发育障碍,自闭症谱系障碍(ASD)和精神分裂症(SZ)的候选易感基因。尚未描述其在神经元中的定位和功能。在这里,我们描述了AGAP1定位于轴突,树突,树突棘和突触,优先与早期和回收内体的标记共定位。功能研究表明,AGAP1的过表达和下调会影响神经元内体运输和树突棘形态,支持AGAP1在回收参与其形态发生的内体运输中的作用。最后,我们确定了AGAP1表达对DTNBP1基因突变的敏感性,这与神经发育障碍有关,并发现在DTNBP1小鼠直系同源基因的无效等位基因中,AGAP1 mRNA和蛋白质水平选择性降低。我们假定内体运输有助于神经发育障碍的发病机理,影响树突棘的形态,从而引起兴奋性突触的结构和功能。

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