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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Astn2, a novel member of the astrotactin gene family, regulates the trafficking of ASTN1 during glial-guided neuronal migration.
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Astn2, a novel member of the astrotactin gene family, regulates the trafficking of ASTN1 during glial-guided neuronal migration.

机译:Astn2,是一种促天体肌动蛋白基因家族的新成员,它在神经胶质引导的神经元迁移过程中调节ASTN1的运输。

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摘要

Glial-guided neuronal migration is a key step in the development of laminar architecture of cortical regions of the mammalian brain. We previously reported that neuronal protein astrotactin (ASTN1) functions as a neuron-glial ligand during CNS glial-guided migration. Here, we identify a new Astn family member, Astn2, that is expressed at high levels in migrating, cerebellar granule neurons, along with Astn1, at developmental stages when glial-guided migration is ongoing. Biochemical and flow cytometry experiments show that ASTN2 forms a complex with ASTN1 and regulates surface expression of ASTN1. Live imaging of Venus-tagged ASTN1 in migrating cerebellar granule cells reveals the intracellular trafficking of ASTN1-Venus, with ASTN1-Venus accumulating in the forward aspect of the leading process where new sites of adhesion will form. Treatment of migrating neurons with Dynasore, a soluble noncompetitive inhibitor of Dynamin, rapidly arrests the migration of immature granule cells in a reversible manner, suggesting the critical importance of receptor trafficking to neuronal locomotion along Bergmann glial fibers in the developing cerebellum. Together, these findings suggest that ASTN2 regulates the levels of ASTN1 in the plasma membrane and that the release of neuronal adhesions to the glial fiber during neuronal locomotion involves the intracellular trafficking of ASTN1.
机译:神经胶质引导的神经元迁移是哺乳动物大脑皮质区域的层状结构发展的关键步骤。我们先前曾报道神经元蛋白astrotactin(ASTN1)在中枢神经系统神经胶质引导的迁移过程中充当神经元-神经胶质配体。在这里,我们确定了一个新的Astn家族成员Astn2,它在神经胶质引导的迁移正在进行的发育阶段,在小脑颗粒神经元以及Astn1中高水平表达。生化和流式细胞仪实验表明,ASTN2与ASTN1形成复合物并调节ASTN1的表面表达。在小脑颗粒细胞的迁移中对金星标记的ASTN1进行实时成像揭示了ASTN1-Venus的细胞内运输,ASTN1-Venus积累在形成新的粘附位点的主要过程中。用可溶的非竞争性Dynamin抑制剂Dynasore治疗迁移的神经元,可逆地迅速阻止未成熟颗粒细胞的迁移,提示受体转运对发育中小脑沿Bergmann胶质纤维的神经元运动至关重要。在一起,这些发现表明ASTN2调节质膜中ASTN1的水平,并且在神经元运动过程中神经元对神经胶质纤维的粘附释放涉及ASTN1的细胞内运输。

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