首页> 外文期刊>Brain research. Developmental brain research >Distribution of RA175/TSLC1/SynCAM, a member of the immunoglobulin superfamily, in the developing nervous system.
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Distribution of RA175/TSLC1/SynCAM, a member of the immunoglobulin superfamily, in the developing nervous system.

机译:免疫球蛋白超家族成员RA175 / TSLC1 / SynCAM在发育中的神经系统中的分布。

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RA175 is a new member of the immunoglobulin superfamily with trans interaction activity, and it plays a role as a tumor suppressor in lung carcinoma (TSLC1) and as a cell adhesion molecule promoting the formation of functional synapses (SynCAM). Little is known about the biological function of RA175/TSLC1/SynCAM neural network formation during neurogenesis. We examined the distribution and colocalization of the RA175/TSLC1/SynCAM protein with other members of the immunoglobulin superfamily such as NCAM, L1, and TAG-1 in the mouse developing nervous system. Consistent with the expression of RA175/TSLC1/SynCAM mRNA, the protein was localized in the brain neuroepithelium at embryonic day (E) 9.5, neural crest at E10.5, motor neurons at E10.5, and olfactory epithelium at E16.5. In contrast with its mRNA, the protein was intensely detected on the fasciculated axons in the floor plates, ventral root, and dorsal funiculus in the E10.5-11.5 spinal cord and colocalized with NCAM and L1 on the ventral root and dorsal funiculus and partly colocalized with TAG-1 on the commissural axons and dorsal funiculus. In the E13.5-15.5 brain, RA175/TSLC1/SynCAM colocalized with NCAM and L1 on the developing thalamocortical fibers from the internal capsule (IC) and partly colocalized with TAG-1 on the cortical efferent axons in the intermediate zone (IZ). RA175/TSLC1/SynCAM was localized on the axons of some of the cortical neurons cultured in vitro. Thus, in addition to cell adhesion activity in the neuroepithelium and the synapses, RA175/TSLC1/SynCAM may be involved in neuronal migration, axon growth, pathfinding, and fasciculation on the axons of differentiating neurons.
机译:RA175是具有反式相互作用活性的免疫球蛋白超家族的新成员,它在肺癌(TSLC1)中起肿瘤抑制作用,在细胞中促进功能性突触形成(SynCAM)粘附分子。关于神经发生过程中RA175 / TSLC1 / SynCAM神经网络形成的生物学功能知之甚少。我们检查了小鼠发育中的神经系统中RA175 / TSLC1 / SynCAM蛋白与免疫球蛋白超家族的其他成员(如NCAM,L1和TAG-1)的分布和共定位。与RA175 / TSLC1 / SynCAM mRNA的表达一致,该蛋白在胚胎第9.5天位于大脑神经上皮,在E10.5处于神经neural,在E10.5处于运动神经元,在E16.5处于嗅觉上皮。与它的mRNA相反,在E10.5-11.5脊髓的底板,腹侧根和背侧束的轴突轴突中强烈检测到该蛋白,并在腹侧根和背侧束中与NCAM和L1共定位。在连合轴突和背侧上与TAG-1共定位。在E13.5-15.5大脑中,RA175 / TSLC1 / SynCAM与NCAM和L1共同定位在来自内囊(IC)的发育中的丘脑皮质纤维上,部分与TAG-1共同定位于中间区(IZ)的皮质传入轴突中。 RA175 / TSLC1 / SynCAM位于体外培养的某些皮质神经元的轴突上。因此,除了神经上皮和突触中的细胞粘附活性外,RA175 / TSLC1 / SynCAM可能还参与神经元迁移,轴突生长,寻路和分化神经元轴突的束缚。

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