Retinoic acid-mediated homeostatic plasticity drives cell type-specific CP-AMPAR accumulation in nucleus accumbens core and incubation of cocaine craving

IF 9.6 1区 医学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Eun-Kyung Hwang, Amanda M. Wunsch, Marina E. Wolf
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Abstract

Incubation of cocaine craving, a translationally relevant model for the persistence of drug craving during abstinence, ultimately depends on strengthening of nucleus accumbens core (NAcc) synapses through synaptic insertion of homomeric GluA1 Ca2+-permeable AMPA receptors (CP-AMPARs). Here we tested the hypothesis that CP-AMPAR upregulation results from a form of homeostatic plasticity, previously characterized in vitro and in other brain regions, that depends on retinoic acid (RA) signaling in dendrites. Under normal conditions, ongoing synaptic transmission maintains intracellular Ca2+ at levels sufficient to suppress RA synthesis. Prolonged blockade of neuronal activity results in disinhibition of RA synthesis, leading to increased GluA1 translation and synaptic insertion of homomeric GluA1 CP-AMPARs. Using slice recordings, we found that increasing RA signaling in NAcc medium spiny neurons (MSN) from drug-naïve rats rapidly upregulates CP-AMPARs. This is observed only in MSN expressing the D1 dopamine receptor. In MSN recorded from rats that have undergone incubation of craving, we observe CP-AMPAR upregulation in D1 MSN (but not D2 MSN) and the effect of exogenous RA application is occluded in these D1 MSN. Instead, interruption of RA signaling in the slice normalizes the incubation-associated elevation of synaptic CP-AMPARs. Paralleling this in vitro finding, interruption of RA signaling in the NAcc of ‘incubated rats’ normalizes elevated cue-induced cocaine seeking back to non-incubated levels. These results suggest that RA signaling becomes tonically active in the NAcc during cocaine withdrawal and, by maintaining elevated CP-AMPAR levels, contributes to the incubation of cocaine craving.

Abstract Image

视黄酸介导的稳态可塑性驱动细胞类型特异性CP-AMPAR在伏隔核核心的积累和可卡因渴求的潜伏期
可卡因渴望的潜伏期是戒断期间药物渴望持续存在的翻译相关模型,最终取决于通过同源GluA1 Ca2+渗透性AMPA受体(CP-AMPARs)的突触插入来加强伏隔核核心(NAcc)突触。在这里,我们测试了一种假设,即CP-AMPAR的上调是由一种稳态可塑性形式引起的,这种可塑性先前在体外和其他大脑区域被描述为依赖于视黄酸(RA)树突信号传导。在正常情况下,持续的突触传递维持细胞内Ca2+在足以抑制RA合成的水平。神经元活动的长期阻断导致RA合成的去抑制,导致GluA1翻译增加和同源GluA1 CP-AMPARs的突触插入。通过切片记录,我们发现drug-naïve大鼠NAcc中棘神经元(MSN)中RA信号的增加可以快速上调cp - ampar。这只在表达D1多巴胺受体的MSN中观察到。在经历渴望潜伏期的大鼠的MSN记录中,我们观察到CP-AMPAR在D1 MSN(而不是D2 MSN)中上调,并且外源性RA应用的影响在这些D1 MSN中被阻断。相反,在切片中RA信号的中断使孵育相关的突触CP-AMPARs升高正常化。与此相对应的是,“孵育大鼠”的NAcc中RA信号的中断使线索诱导的升高的可卡因寻求恢复到非孵育水平。这些结果表明,在可卡因戒断期间,RA信号在NAcc中变得强直活跃,并且通过维持升高的CP-AMPAR水平,有助于可卡因渴望的潜伏期。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Molecular Psychiatry
Molecular Psychiatry 医学-精神病学
CiteScore
20.50
自引率
4.50%
发文量
459
审稿时长
4-8 weeks
期刊介绍: Molecular Psychiatry focuses on publishing research that aims to uncover the biological mechanisms behind psychiatric disorders and their treatment. The journal emphasizes studies that bridge pre-clinical and clinical research, covering cellular, molecular, integrative, clinical, imaging, and psychopharmacology levels.
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