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DSCAM Promotes Refinement in the Mouse Retina through Cell Death and Restriction of Exploring Dendrites

机译:DSCAM通过细胞死亡和限制探索树突来促进小鼠视网膜的细化。

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摘要

In this study we develop and use a gain-of-function mouse allele of the Down syndrome cell adhesion molecule (Dscam) to complement loss-of-function models. We assay the role of Dscam in promoting cell death, spacing, and laminar targeting of neurons in the developing mouse retina. We find that ectopic or overexpression of Dscam is sufficient to drive cell death. Gain-of-function studies indicate that Dscam is not sufficient to increase spatial organization, prevent cell-to-cell pairing, or promote active avoidance in the mouse retina, despite the similarity of the Dscam loss-of-function phenotype in the mouse retina to phenotypes observed in Drosophila Dscam1 mutants. Both gain- and loss-of-function studies support a role for Dscam in targeting neurites; DSCAM is necessary for precise dendrite lamination, and is sufficient to retarget neurites of outer retinal cells after ectopic expression. We further demonstrate that DSCAM guides dendrite targeting in type 2 dopaminergic amacrine cells, by restricting the stratum in which exploring retinal dendrites stabilize, in a Dscam dosage-dependent manner. Based on these results we propose a single model to account for the numerous Dscam gain- and loss-of-function phenotypes reported in the mouse retina whereby DSCAM eliminates inappropriately placed cells and connections.
机译:在这项研究中,我们开发并使用了唐氏综合症细胞粘附分子(Dscam)的功能增强小鼠等位基因,以补充功能丧失模型。我们分析了Dscam在促进发育中的小鼠视网膜中神经元的细胞死亡,间隔和层状靶向中的作用。我们发现异位或Dscam的过表达足以驱动细胞死亡。功能获得性研究表明,尽管Dscam在小鼠视网膜中的功能丧失表型相似,但Dscam不足以增加空间组织,防止细胞与细胞配对或促进主动回避。果蝇Dscam1突变体中观察到的表型。功能获得和功能丧失研究均支持Dscam在靶向神经突中发挥作用。 DSCAM对于精确的树突状层压是必需的,并且足以在异位表达后重新定位外部视网膜细胞的神经突。我们进一步证明DSCAM通过限制Dscam剂量依赖性方式限制探索视网膜树突稳定的层,从而在2型多巴胺能无长突细胞中引导树突靶向。基于这些结果,我们提出了一个单一模型来解释小鼠视网膜中报道的众多Dscam功能丧失表型,从而DSCAM消除了放置不当的细胞和连接。

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