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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >The cell adhesion molecule neuroplastin-65 inhibits hippocampal long-term potentiation via a mitogen-activated protein kinase p38-dependent reduction in surface expression of GluR1-containing glutamate receptors.
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The cell adhesion molecule neuroplastin-65 inhibits hippocampal long-term potentiation via a mitogen-activated protein kinase p38-dependent reduction in surface expression of GluR1-containing glutamate receptors.

机译:细胞粘附分子Neuroplastin-65通过有丝分裂原激活的蛋白激酶p38依赖性降低含GluR1的谷氨酸受体表面表达来抑制海马长时程增强。

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Neuroplastin-65 is a brain-specific, synapse-enriched member of the immunoglobulin (Ig) superfamily of cell adhesion molecules. Previous studies highlighted the importance of neuroplastin-65 for long-term potentiation (LTP), but the mechanism was unclear. Here, we show how neuroplastin-65 activation of mitogen-activated protein kinase p38 (p38MAPK) modified synapse strength by altering surface glutamate receptor expression. Organotypic hippocampal slice cultures treated with the complete extracellular fragment of neuroplastin-65 (FcIg1-3) sustained an increase in the phosphorylation of p38MAPK and an inability to induce LTP at hippocampal synapses. The LTP block was reversed by application of the p38MAPK inhibitor SB202190, suggesting that p38MAPK activation occurred downstream of neuroplastin-65 binding and upstream of the loss of LTP. Further investigation revealed that the mechanism underlying neuroplastin-65-dependent prevention of LTP was a p38MAPK-dependent acceleration of the loss of surface-exposed glutamate receptor subunits that was reversed by pretreatment with the p38MAPK inhibitor SB202190. Our results indicate that neuroplastin-65 binding and associated stimulation of p38MAPK activity are upstream of a mechanism to control surface glutamate receptor expression and thereby influence plasticity at excitatory hippocampal synapses.
机译:Neuroplastin-65是细胞粘附分子免疫球蛋白(Ig)超家族的大脑特异性突触富集成员。先前的研究强调了Neuroplastin-65对于长期增强(LTP)的重要性,但其机制尚不清楚。在这里,我们展示了如何通过改变表面谷氨酸受体的表达来激活促分裂原激活的蛋白激酶p38(p38MAPK)的Neuroplastin-65修饰突触强度。用神经营养素-65的完整细胞外片段(FcIg1-3)处理的器官型海马切片培养物,p38MAPK的磷酸化水平持续升高,并且无法在海马突触处诱导LTP。通过应用p38MAPK抑制剂SB202190可以逆转LTP阻滞,表明p38MAPK激活发生在神经增塑蛋白65结合的下游和LTP丧失的上游。进一步的研究表明,神经塑蛋白65依赖性LTP预防的潜在机制是p38MAPK依赖性的表面暴露的谷氨酸受体亚基损失的加速,该作用可通过用p38MAPK抑制剂SB202190进行预处理来逆转。我们的结果表明,神经增塑蛋白65结合和相关的p38MAPK活性刺激是控制表面谷氨酸受体表达的机制的上游,从而影响兴奋性海马突触的可塑性。

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