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Brain-derived neurotrophic factor signal enhances and maintains the expression of AMPA receptor-associated PDZ proteins in developing cortical neurons

机译:脑源性神经营养因子信号增强和维持发育中的皮层神经元中AMPA受体相关的PDZ蛋白的表达

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摘要

Postsynaptic molecules with PDZ domains (PDZ proteins) interact with various glutamate receptors and regulate their subcellular trafficking and stability. In rat neocortical development, the protein expression of AMPA-type glutamate receptor GluR1 lagged behind its mRNA expression and rather paralleled an increase in PDZ protein levels. One of the neurotrophins, brain-derived neurotrophic factor (BDNF), appeared to contribute to this process, regulating the PDZ protein expression. In neocortical cultures, BDNF treatment upregulated SAP97, GRIP1, and Pick1 PDZ proteins. Conversely, BDNF gene targeting downregulated these same PDZ molecules. The BDNF-triggered increases in PDZ proteins resulted in the elevation of their total association with the AMPA receptors GluR1 and GluR2/3, which led to the increase in AMPA receptor proteins. When Sindbis viruses carrying GluR1 or GluR2 C-terminal decoys disrupted their interactions, GluR2 C-terminal decoys inhibited both BDNF-triggered GluR1 and GluR2/3 increases, whereas GluR1 C-terminal decoys blocked only the BDNF-triggered GluR1 increase. In agreement, coexpression of SAP97 and GluR1 in nonneuronal HEK293 cells increased both proteins compared with their single transfection, implying mutual stabilization. This work reveals a novel function of BDNF in postsynaptic development by regulating the PDZ protein expression.
机译:具有PDZ域的突触后分子(PDZ蛋白)与各种谷氨酸受体相互作用,并调节其亚细胞运输和稳定性。在大鼠新皮层发育中,AMPA型谷氨酸受体GluR1的蛋白表达落后于其mRNA表达,而与PDZ蛋白水平的增加平行。一种神经营养蛋白,脑源性神经营养因子(BDNF),似乎对这一过程有贡献,调节了PDZ蛋白的表达。在新皮层文化中,BDNF处理上调了SAP97,GRIP1和Pick1 PDZ蛋白。相反,靶向BDNF的基因下调了这些相同的PDZ分子。 BDNF触发的PDZ蛋白增加导致它们与AMPA受体GluR1和GluR2 / 3的总缔合增加,从而导致AMPA受体蛋白增加。当带有GluR1或GluR2 C末端诱饵的Sindbis病毒破坏了它们的相互作用时,GluR2 C末端诱饵既抑制了BDNF触发的GluR1和GluR2 / 3的增加,而GluR1 C末端的诱饵则仅阻止了BDNF触发的GluR1的增加。一致的是,与非转染相比,SAP97和GluR1在非神经HEK293细胞中的共表达增加了这两种蛋白,这意味着它们相互稳定。这项工作揭示了BDNF通过调节PDZ蛋白表达在突触后发育中的新功能。

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