首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Roles of Fragile X Mental Retardation Protein in Dopaminergic Stimulation-induced Synapse-associated Protein Synthesis and Subsequent α-Amino-3-hydroxyl-5-methyl-4-isoxazole-4-propionate (AMPA) Receptor Internalization
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Roles of Fragile X Mental Retardation Protein in Dopaminergic Stimulation-induced Synapse-associated Protein Synthesis and Subsequent α-Amino-3-hydroxyl-5-methyl-4-isoxazole-4-propionate (AMPA) Receptor Internalization

机译:易碎的X智力抑制蛋白在多巴胺能刺激诱导的突触相关蛋白合成及随后的α-氨基-3-羟基-5-甲基-4-异恶唑-4-丙酸酯(AMPA)受体内化中的作用

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摘要

Fragile X syndrome, the most common form of inherited mental retardation, is caused by the absence of the RNA-binding protein fragile X mental retardation protein (FMRP). FMRP regulates local protein synthesis in dendritic spines. Dopamine (DA) is involved in the modulation of synaptic plasticity. Activation of DA receptors can regulate higher brain functions in a protein synthesis-dependent manner. Our recent study has shown that FMRP acts as a key messenger for DA modulation in forebrain neurons. Here, we demonstrate that FMRP is critical for DA D1 receptor-mediated synthesis of synapse-associated protein 90/PSD-95-associated protein 3 (SAPAP3) in the prefrontal cortex (PFC). DA D1 receptor stimulation induced dynamic changes of FMRP phosphorylation. The changes in FMRP phosphorylation temporally correspond with the expression of SAPAP3 after D1 receptor stimulation. Protein phosphatase 2A, ribosomal protein S6 kinase, and mammalian target of rapamycin are the key signaling molecules for FMRP linking DA D1 receptors to SAPAP3. Knockdown of SAPAP3 did not affect surface expression of α-amino-3-hydroxyl-5-methyl-4-isoxazole-4-propionate (AMPA) GluR1 receptors induced by D1 receptor activation but impaired their subsequent internalization in cultured PFC neurons; the subsequent internalization of GluR1 was also impaired in Fmr1 knock-out PFC neurons, suggesting that FMRP may be involved in subsequent internalization of GluR1 through regulating the abundance of SAPAP3 after DA D1 receptor stimulation. Our study thus provides further insights into FMRP involvement in DA modulation and may help to reveal the molecular mechanisms underlying impaired learning and memory in fragile X syndrome.
机译:脆性X综合征是遗传性智力低下的最常见形式,是由于缺乏RNA结合蛋白脆性X智力低下蛋白(FMRP)引起的。 FMRP调节树突棘中的局部蛋白质合成。多巴胺(DA)参与突触可塑性的调节。 DA受体的激活可以以蛋白质合成依赖性方式调节大脑的更高功能。我们最近的研究表明,FMRP是前脑神经元DA调节的关键信使。在这里,我们证明FMRP对于前额叶皮层(PFC)中DA D1受体介导的突触相关蛋白90 / PSD-95相关蛋白3(SAPAP3)的合成至关重要。 DA D1受体刺激引起FMRP磷酸化的动态变化。 FMRP磷酸化的变化在时间上与D1受体刺激后SAPAP3的表达相对应。蛋白磷酸酶2A,核糖体蛋白S6激酶和哺乳动物雷帕霉素靶标是FMRP将DA D1受体连接到SAPAP3的关键信号分子。击倒SAPAP3不会影响D1受体激活诱导的α-氨基-3-羟基-1-甲基-5-甲基-4-异恶唑-4-丙酸酯(AMPA)GluR1受体的表面表达,但会损害它们随后在培养的PFC神经元中的内在化。 Fmr1基因敲除的PFC神经元中GluR1的后续内在化也受到损害,这表明FMRP可能通过调节DA D1受体刺激后SAPAP3的丰度而参与了GluR1的后续内在化。因此,我们的研究为FMRP参与DA调节提供了进一步的见解,并可能有助于揭示脆性X综合征中学习和记忆受损的分子机制。

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