首页> 外文期刊>The Journal of Comparative Neurology >Expression of the cell adhesion proteins BEN/SC1/DM-GRASP and TAG-1 defines early steps of axonogenesis in the human spinal cord.
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Expression of the cell adhesion proteins BEN/SC1/DM-GRASP and TAG-1 defines early steps of axonogenesis in the human spinal cord.

机译:细胞粘附蛋白BEN / SC1 / DM-GRASP和TAG-1的表达定义了人类脊髓中轴突发生的早期步骤。

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We have studied the expression pattern of two cell adhesion proteins of the immunoglobin (Ig) superfamily, BEN/SC1/DM-GRASP (BEN) and the transient axonal glycoprotein TAG-1, during the development of the human nervous system. This study was performed by immunocytochemistry on sections of human embryos ranging from 4 to 13 weeks postconception. The overall distribution of the two proteins during development is very similar to that reported in other vertebrate species, but several important differences have been observed. Both proteins exhibit a transient expression on selected neuronal populations, which include the motor and the sensory neurons. In addition, BEN was also detected on virtually all neurons derived from the neural crest as well as in nonneuronal tissues. A major difference of expression with the chick embryo is that, in the motor neurons, BEN expression was not observed at early stages of development, thus arguing against a role of this molecule in pathfinding and fasciculation. BEN was observed to be restricted to subsets of motor neurons, such as the medial column at the upper limb level. Expression was also detected in a laterodorsal population of the ventral horn cells, which are likely to correspond to migrating preganglionic neurons that originate from the motor pool at the thoracic level. TAG-1 was found on commissural neurons and weakly on the sympathetic neurons; it was also detected on restricted nonneuronal populations. In addition, we observed TAG-1 expression in fibers that could correspond either to subsets of dorsal root ganglia (DRGs) central afferences (including the Ia fibers) or to the axons of association interneurons and in scattered motoneurons likely to correspond either to preganglionic neurons, to gamma-motoneurons, or to late-born motoneurons. Therefore, our results indicate that the molecular strategies used to establish the axonal scaffolding of the nervous system in humans are extremely conserved among the different vertebrates.
机译:我们已经研究了人类神经系统发育过程中免疫球蛋白(Ig)超家族的两个细胞粘附蛋白BEN / SC1 / DM-GRASP(BEN)和瞬时轴突糖蛋白TAG-1的表达模式。这项研究是通过免疫细胞化学对受精后4至13周的人类胚胎切片进行的。两种蛋白质在发育过程中的总体分布与其他脊椎动物物种中报道的非常相似,但已观察到一些重要差异。两种蛋白质在选定的神经元群体(包括运动神经元和感觉神经元)上均表现出瞬时表达。此外,几乎在所有源自神经c的神经元以及非神经组织中都检测到了BEN。与小鸡胚胎表达的主要区别在于,在运动神经元中,在发育的早期阶段未观察到BEN表达,因此争论了该分子在寻路和束缚中的作用。观察到BEN限于运动神经元的子集,例如上肢水平的内侧柱。在腹角细胞的后嗅群体中也检测到表达,这可能对应于源自运动水平胸廓的迁移的神经节前神经元。 TAG-1位于连合神经元上,而在交感神经元上较弱。还可以在非神经元受限人群中检测到。此外,我们观察到纤维中的TAG-1表达可能与背根神经节(DRGs)中央干扰的子集(包括Ia纤维)相对应,或者与中间神经元的轴突以及可能与神经节前神经元相对应的运动神经元的轴突相对应。 ,γ-运动神经元或晚期出生的运动神经元。因此,我们的结果表明,用于建立人类神经系统轴突支架的分子策略在不同脊椎动物之间极为保守。

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