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原始免疫球蛋白超家族神经细胞黏附分子的结构与功能:来自涡虫研究的启示

Structure and function of primitive immunoglobulin superfamily neural cell adhesion molecules: a lesson from studies on planarian.

作者信息

Fusaoka Eri, Inoue Takeshi, Mineta Katsuhiko, Agata Kiyokazu, Takeuchi Kosei

机构信息

Department of Biological Science, Nagoya University Graduate School of Science, Furocho, Chikusa-ku, Nagoya 464-8602, Japan.

出版信息

Genes Cells. 2006 May;11(5):541-55. doi: 10.1111/j.1365-2443.2006.00962.x.

Abstract

Precise wiring and proper remodeling of the neural network are essential for its normal function. The freshwater planarian is an attractive animal in which to study the formation and maintenance of the neural network due to its high regenerative capability and developmental plasticity. Although a recent study revealed that homologs of netrin and its receptors are required for regeneration and maintenance of the planarian central nervous system (CNS), the roles of cell adhesion in the formation and maintenance of the planarian neural network remain poorly understood. In the present study, we found primitive immunoglobulin superfamily cell adhesion molecules (IgCAMs) in a planarian that are homologous to vertebrate neural IgCAMs. We identified planarian orthologs of NCAM, L1CAM, contactin and DSCAM, and designated them DjCAM, DjLCAM, DjCTCAM and DjDSCAM, respectively. We further confirmed that they function as cell adhesion molecules using cell aggregation assays. DjCAM and DjDSCAM were found to be differentially expressed in the CNS. Functional analyses using RNA interference revealed that DjCAM is partly involved in axon formation, and that DjDSCAM plays crucial roles in neuronal cell migration, axon outgrowth, fasciculation and projection.

摘要

神经网络的精确布线和适当重塑对其正常功能至关重要。淡水涡虫因其高再生能力和发育可塑性,是研究神经网络形成与维持的理想动物。尽管最近一项研究表明,netrin及其受体的同源物对涡虫中枢神经系统(CNS)的再生和维持是必需的,但细胞黏附在涡虫神经网络形成和维持中的作用仍知之甚少。在本研究中,我们在涡虫中发现了与脊椎动物神经免疫球蛋白超家族细胞黏附分子(IgCAMs)同源的原始免疫球蛋白超家族细胞黏附分子。我们鉴定出了NCAM、L1CAM、contactin和DSCAM的涡虫直系同源物,并分别将它们命名为DjCAM、DjLCAM、DjCTCAM和DjDSCAM。我们通过细胞聚集试验进一步证实它们作为细胞黏附分子发挥作用。发现DjCAM和DjDSCAM在中枢神经系统中差异表达。使用RNA干扰进行的功能分析表明,DjCAM部分参与轴突形成,而DjDSCAM在神经元细胞迁移、轴突生长、成束和投射中起关键作用。

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