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首页> 外文期刊>Biological psychiatry >Reversible palmitoylation regulates surface stability of AMPA receptors in the nucleus accumbens in response to cocaine in vivo.
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Reversible palmitoylation regulates surface stability of AMPA receptors in the nucleus accumbens in response to cocaine in vivo.

机译:可逆的棕榈酰化反应调节可卡因体内的伏安核中AMPA受体的表面稳定性。

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BACKGROUND: Palmitoylation is emerging as one of the most important posttranslational modifications of excitatory synaptic proteins in mammalian brain cells. As a reversible and regulatable modification sensitive to changing synaptic inputs, palmitoylation of ionotropic glutamate receptors contributes not only to the modulation of normal receptor and synaptic activities but also to the pathogenesis of various neuropsychiatric disorders. Here we report that palmitoylation of the alpha-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid (AMPA) receptor is regulated by the psychostimulant, cocaine, and such regulation is involved in cocaine action. METHODS: We tested palmitoylation and surface expression of AMPA receptors in striatal neurons and psychomotor behavior in response to cocaine in rats. RESULTS: All four AMPA receptor subunits (GluA1-4 or GluR1-4) are palmitoylated in the nucleus accumbens (NAc) of adult rats. Among them, GluA1 and GluA3 are preferentially upregulated in their palmitoylation levels by a systemic injection of cocaine. The upregulated GluA1 and 3 palmitoylation is a transient and reversible event. Consequently, it increases the susceptibility of surface-expressed GluA1 and 3 to internalization trafficking, leading to a temporal loss of surface receptor expression. Blockade of the regulated GluA1/3 palmitoylation with a palmitoylation inhibitor in the local NAc reverses the loss of surface GluA1/3. The inhibition of palmitoylation concurrently sustains behavioral responsivity to cocaine as well. CONCLUSIONS: Our data identify a novel drug-palmitoylation coupling in the center of limbic reward circuits. Through palmitoylating selective AMPA receptor subunits, cocaine activity dependently regulates trafficking and subcellular localization of the receptor in NAc neurons and dynamically controls psychomotor sensitivity to the psychoactive drug in vivo.
机译:背景:棕榈酰化是哺乳动物脑细胞中兴奋性突触蛋白最重要的翻译后修饰之一。作为对可改变的突触输入敏感的可逆且可调节的修饰,离子型谷氨酸受体的棕榈酰化不仅有助于调节正常受体和突触活性,而且有助于各种神经精神疾病的发病机理。在这里,我们报告说,α-氨基-3-羟基-5-甲基-4-异恶唑丙酸(AMPA)受体的棕榈酰化受精神兴奋剂可卡因的调节,而这种调节涉及可卡因的作用。方法:我们测试了大鼠纹状体神经元中AMPA受体的棕榈酰化和表面表达以及对可卡因的反应后的精神运动行为。结果:成年大鼠伏伏核(NAc)中所有四个AMPA受体亚基(GluA1-4或GluR1-4)都被棕榈酰化。其中,通过全身注射可卡因,GluA1和GluA3的棕榈酰化水平优先上调。上调的GluA1和3棕榈酰化是一个短暂且可逆的事件。因此,它增加了表面表达的GluA1和3对内在运输的敏感性,导致表面受体表达的时间损失。在局部NAc中用棕榈酰化抑制剂阻断调节的GluA1 / 3棕榈酰化可逆转表面GluA1 / 3的损失。棕榈酰化的抑制同时也维持了对可卡因的行为响应性。结论:我们的数据确定了在边缘奖励回路中心的新型药物-棕榈酰化偶联。通过棕榈酰化选择性AMPA受体亚基,可卡因活性可独立调节NAc神经元中受体的运输和亚细胞定位,并动态控制体内对精神活性药物的精神运动敏感性。

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