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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Netrin-1/DCC signaling in commissural axon guidance requires cell-autonomous expression of heparan sulfate.
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Netrin-1/DCC signaling in commissural axon guidance requires cell-autonomous expression of heparan sulfate.

机译:在连合轴突指导中的Netrin-1 / DCC信号传导需要硫酸乙酰肝素的细胞自主表达。

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摘要

There is increasing evidence that heparan sulfate (HS) plays an essential role in various axon guidance processes. These observations, however, have not addressed whether HS is required cell autonomously as an axonal coreceptor or as an environmental factor that modulates the localization of guidance molecules in the terrain in which growing axons navigate. Here we demonstrate that netrin-1-mediated commissural axon guidance requires cell-autonomous expression of HS in commissural neurons in vivo. We used the Wnt1-Cre transgene to drive region-specific ablation of Ext1, which encodes an enzyme essential for HS synthesis, in the dorsal part of the spinal cord. Remarkably, Wnt1-Cre-mediated ablation of Ext1 causes commissural axon pathfinding defects that share similarities with those of Netrin-1-deficient and DCC (deleted in colorectal cancer)-deficient mice. Neither Ext1-deficient dorsal spinal cord explants nor wild-type explants in which HS expression was ablated could extend axons in response to netrin-1. Intracellular signaling downstream of netrin-1 and DCC was defective in Ext1-deficient commissural neurons and in DCC-transfected HEK293T cells from which HS was removed. These results demonstrate that the expression of HS by commissural neurons is essential for these neurons to transduce netrin-1 signals, thus providing evidence for a cell-autonomous role of HS in netrin-1/DCC-mediated axon guidance.
机译:越来越多的证据表明,硫酸乙酰肝素(HS)在各种轴突引导过程中起着至关重要的作用。但是,这些观察结果并未解决HS是否是作为轴突共受体自主地需要的细胞,还是作为调节引导分子在生长轴突的地形中定位的环境因素的自主细胞。在这里,我们证明netrin-1介导的连合轴突指导需要体内连合神经元中HS的细胞自主表达。我们使用Wnt1-Cre转基因来驱动Ext1的区域特异性消融,Ext1编码在脊髓背侧部分中HS合成必不可少的酶。值得注意的是,Wnt1-Cre介导的Ext1消融导致连合轴突寻路缺陷,与Netrin-1缺陷和DCC(在结直肠癌中缺失)缺陷的小鼠具有相似的相似性。缺乏Ext1的背侧脊髓外植体和消除了HS表达的野生型外植体均不能响应netrin-1延长轴突。 netrin-1和DCC下游的细胞内信号传导在Ext1缺失的连合神经元和DCC转染的已去除HS的HEK293T细胞中有缺陷。这些结果表明,连合神经元表达HS对于这些神经元转导netrin-1信号至关重要,因此为HS在netrin-1 / DCC介导的轴突导向中的细胞自主作用提供了证据。

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