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在培养的鸡伯格曼胶质细胞中,谷氨酸通过α-氨基-3-羟基-5-甲基异恶唑-4-丙酸受体调节Oct-2的DNA结合活性。

Glutamate regulates Oct-2 DNA-binding activity through alpha-amino-3-hydroxy-5-methylisoxazole-4-propionate receptors in cultured chick Bergmann glia cells.

作者信息

Méndez J Alfredo, López-Bayghen Esther, Rojas Fausto, Hernández María Elena, Ortega Arturo

机构信息

Departamento de Genética y Biología Molecular, Centro de Investigación y de Estudios Avanzados del instituto Politécnico Nacional, México.

出版信息

J Neurochem. 2004 Feb;88(4):835-43. doi: 10.1046/j.1471-4159.2003.02206.x.

Abstract

Ionotropic glutamate receptors in cerebellar Bergmann glial cells are linked to transcriptional regulation and, by these means, are thought to play an important role in plasticity, learning and memory and in several neuropathologies. Within the CNS, the transcription factors of the POU family bind their target DNA sequences after a growth factor-dependent phosphorylation-dephosphorylation cascade. Exposure of cultured Bergmann glial cells to glutamate leads to a time- and dose-dependent increase in Oct-2 DNA-binding activity. The use of specific pharmacological tools established the involvement of Ca2+-permeable alpha-amino-3-hydroxy-5-methylisoxazole-4-propionate receptors. Furthermore, the signaling cascade includes phosphatidyl inositol 3-kinase as well as protein kinase C activation. Interestingly, transcriptional as well as translational inhibitors abolish the glutamate effect, suggesting a transcriptional up-regulation of the oct-2 gene. These data demonstrate that Oct-2 expression is not restricted to neurons and further strengthen the notion that the glial glutamate receptors participate in the modulation of glutamatergic cerebellar neurotransmission.

摘要

小脑伯格曼胶质细胞中的离子型谷氨酸受体与转录调控相关联,因此被认为在可塑性、学习和记忆以及多种神经病理学中发挥重要作用。在中枢神经系统内,POU家族的转录因子在依赖生长因子的磷酸化 - 去磷酸化级联反应后与它们的靶DNA序列结合。将培养的伯格曼胶质细胞暴露于谷氨酸会导致Oct - 2 DNA结合活性出现时间和剂量依赖性增加。使用特定的药理学工具证实了Ca2+ 通透的α - 氨基 - 3 - 羟基 - 5 - 甲基异恶唑 - 4 - 丙酸受体的参与。此外,信号级联反应包括磷脂酰肌醇3 - 激酶以及蛋白激酶C的激活。有趣的是,转录和翻译抑制剂消除了谷氨酸的作用,提示oct - 2基因存在转录上调。这些数据表明Oct - 2的表达并不局限于神经元,并进一步强化了胶质谷氨酸受体参与调节小脑谷氨酸能神经传递的观点。

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