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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Developmental localization of semaphorin H messenger RNA acting as a collapsing factor on sensory axons in the mouse brain.
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Developmental localization of semaphorin H messenger RNA acting as a collapsing factor on sensory axons in the mouse brain.

机译:信号量H信使RNA的发育定位是小鼠脑中感觉轴突的崩溃因子。

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Semaphorins/collapsins, a family of genes with a semaphorin domain conserved from insects through to mammals, are believed to be involved in axon guidance during neuronal development. We report the expression patterns of mouse semaphorin messenger RNAs. Among secreted semaphorins, mouse semaphorin H is structurally most similar to semaphorin III/D, the first semaphorin identified as a collapsing factor for sensory axons. However, its expression patterns apparently differ from those of semaphorin III/D. The messenger RNAs are distributed in the brain widely but unevenly during development, in particular, in the main olfactory bulb, hippocampus and pontine nucleus. In the trunk, the expression level is high in mesodermal tissues surrounding the dorsal root ganglia, while it is low in the spinal cord. Moreover, we examined whether this molecule has activity to collapse growth cones of sensory neurons, as well as semaphorin III/D. Mouse semaphorin H collapsed growth cones of sensory neurons of the dorsal root ganglion in a dose-dependent manner, and anti-neuropilin antibodies inhibited this activity. Taken together, these results suggest that mouse semaphorin H can function as a chemorepellent to guide sensory peripheral nerves, most likely via neuropilin as a receptor.
机译:Semaphorins / collapsins是具有从昆虫一直到哺乳动物保守的semaphorin域的基因家族,被认为在神经元发育过程中参与轴突的引导。我们报告了小鼠信号量信使RNA的表达模式。在分泌的semaphorin中,小鼠semaphorin H在结构上与semaphorin III / D最相似,后者是第一个被确定为感觉轴突的崩溃因子的semaphorin。但是,其表达模式显然不同于信号量III / D。信使RNA在大脑中广泛分布,但在发育过程中分布不均,特别是在主要嗅球,海马和桥脑核中。在躯干中,在背根神经节周围的中胚层组织中的表达水平较高,而在脊髓中则较低。此外,我们检查了该分子是否具有使感觉神经元的生长锥以及信号蛋白III / D崩溃的活性。小鼠semaphorin H以剂量依赖性方式破坏了背根神经节感觉神经元的生长锥,而抗神经纤维蛋白抗体抑制了该活性。两者合计,这些结果表明,小鼠信号灯蛋白H可以作为化学趋化剂来引导感觉周围神经,最有可能是通过神经毛蛋白作为受体。

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