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首页> 外文期刊>Journal of cell biology >Biochemical and functional characterization of a novel neuron-glia adhesion molecule that is involved in neuronal migration.
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Biochemical and functional characterization of a novel neuron-glia adhesion molecule that is involved in neuronal migration.

机译:新型神经元 - 胶质粘附分子的生化和功能表征参与神经元迁移。

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Adhesion molecule on glia (AMOG) is a novel neural cell adhesion molecule that mediates neuron-astrocyte interaction in vitro. In situ AMOG is expressed in the cerebellum by glial cells at the critical developmental stages of granule neuron migration. Granule neuron migration that is guided by surface contacts between migrating neurons and astroglial processes is inhibited by monoclonal AMOG antibody, probably by disturbing neuron-glia adhesion. AMOG is an integral cell surface glycoprotein of 45-50-kD molecular weight with a carbohydrate content of at least 30%. It does not belong to the L2/HNK-1 family of neural cell adhesion molecules but expresses another carbohydrate epitope that is shared with the adhesion molecules L1 and myelin-associated glycoprotein, but is not present on N-CAM or J1.
机译:Glia(amog)上的粘附分子是一种新型神经细胞粘附分子,介导在体外介导神经元星形胶质细胞相互作用。在原位amog通过胶质细胞在颗粒神经元迁移的关键发育阶段表达。由迁移神经元和星形痛过程之间的表面触点引导的颗粒神经元迁移受到单克隆胺抗体的抑制,可能是通过扰乱神经元胶质胶质粘附。 Amog是45-50kd分子量的整体细胞表面糖蛋白,其碳水化合物含量至少为30%。它不属于L2 / HNK-1家族的神经细胞粘附分子,但表达与粘附分子L1和髓鞘相关糖蛋白共用的另一种碳水化合物表位,但不存在于N-Cam或J1上。

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