首页> 外文期刊>Neurochemical research >Adenosine A1 Receptor-Mediated Endocytosis of AMPA Receptors Contributes to Impairments in Long-Term Potentiation (LTP) in the Middle-Aged Rat Hippocampus
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Adenosine A1 Receptor-Mediated Endocytosis of AMPA Receptors Contributes to Impairments in Long-Term Potentiation (LTP) in the Middle-Aged Rat Hippocampus

机译:腺苷A1受体介导的AMPA受体的内吞作用导致中年大鼠海马的长期增强(LTP)受损。

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Aging causes multiple changes in the mammalian brain, including changes in synaptic signaling. Previous reports have shown increased extracellular adenosine in the aging brain, and we recently reported that activation of adenosine A1 receptors (A1Rs) induces AMPA receptor (AMPAR) internalization in rat hippocampus. This study investigated whether aging-related changes in the rat hippocampus include altered surface expression of adenosine A1 and A2A receptors, and whether these changes correspond to changes in AMPAR surface expression and altered synaptic plasticity. We found reduced A1R surface expression in middle-aged rat hippocampus, and also reduced GluA1 and GluA2 AMPAR subunit surface expression. Using a chemically-induced LTP (cLTP) experimental protocol, we recorded fEPSPs in young (1 month old) and middle-aged (7-12 month old) rat hippocampal slices. There were significant impairments in cLTP in middle-aged slices, suggesting impaired synaptic plasticity. Since we previously showed that the A1R agonist N-6-cyclopentyladenosine (CPA) reduced both A1Rs and GluA2/GluA1 AMPARs, we hypothesized that the observed impaired synaptic plasticity in middle-aged brains is regulated by A1R-mediated AMPAR internalization by clathrin-mediated endocytosis. Following cLTP, we found a significant increase in GluA1 and GluA2 surface expression in young rats, which was blunted in middle-aged brains or in young brains pretreated with CPA. Blocking A1Rs with 8-cyclopentyl-1,3-dipropylxanthine or AMPAR endocytosis with either Tat-GluA2-3Y peptide or dynasore (dynamin inhibitor) similarly enhanced AMPAR surface expression following cLTP. These data suggest that age-dependent alteration in adenosine receptor expression contributes to increased AMPAR endocytosis and impaired synaptic plasticity in aged brains.
机译:衰老导致哺乳动物大脑的多种变化,包括突触信号的变化。以前的报道表明衰老的大脑中细胞外腺苷增加,并且我们最近报道腺苷A1受体(A1Rs)的激活诱导了大鼠海马中的AMPA受体(AMPAR)内在化。这项研究调查了大鼠海马中与衰老相关的变化是否包括腺苷A1和A2A受体的表面表达改变,以及这些改变是否对应于AMPAR表面表达的改变和突触可塑性的改变。我们发现中年大鼠海马中的A1R表面表达降低,并且还降低了GluA1和GluA2 AMPAR亚基表面表达。使用化学诱导的LTP(cLTP)实验方案,我们在年轻(1个月大)和中年(7-12个月大)大鼠海马切片中记录了fEPSP。中年切片的cLTP明显受损,表明突触可塑性受损。由于我们之前已经证明了A1R激动剂N-6-环戊基腺苷(CPA)会同时降低A1R和GluA2 / GluA1 AMPAR,因此我们假设观察到的中年大脑受损突触可塑性受A1R介导的网格蛋白介导的AMPAR内在调节内吞作用。继cLTP之后,我们发现幼鼠的GluA1和GluA2表面表达显着增加,这在中年人脑或CPA预处理的幼脑中变得钝了。用cGTP后,用Tat-GluA2-3Y肽或dynasore(动力抑制剂)用8-环戊基-1,3-二丙基黄嘌呤或AMPAR内吞作用阻断A1Rs同样增强了AMPAR表面表达。这些数据表明,腺苷受体表达的年龄依赖性改变有助于增加老年大脑的AMPAR内吞作用并削弱突触可塑性。

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