伏核中的蛋白质降解在可卡因奖赏记忆中的关键作用

A critical role for protein degradation in the nucleus accumbens core in cocaine reward memory
2013-11-23 02:21点击:557次发表评论
作者:Ren, Z.-Y. | Liu, M.-M. | Xue, Y.-X. | Ding, Z.-B.
机构: 北京大学第三医院药剂科
期刊: NEUROPSYCHOPHARMACOL2013年4月5期38卷

Pharmacy Department, Peking University Third Hospital, Beijing, China

 

Abstract

The intense associative memories that develop between cocaine-paired contexts and rewarding stimuli contribute to cocaine seeking and relapse. Previous studies have shown impairment in cocaine reward memories by manipulating a labile state induced by memory retrieval, but the mechanisms that underlie the destabilization of cocaine reward memory are unknown. In this study, using a Pavlovian cocaine-induced conditioned place preference (CPP) procedure in rats, we tested the contribution of ubiquitin-proteasome system-dependent protein degradation in destabilization of cocaine reward memory. First, we found that polyubiquitinated protein expression levels and polyubiquitinated N-ethylmaleimide-sensitive fusion (NSF) markedly increaseD15 min after retrieval while NSF protein levels decreaseD1 h after retrieval in the synaptosomal membrane fraction in the nucleus accumbens (NAc) core. We then found that infusion of the proteasome inhibitor lactacystin into the NAc core prevented the impairment of memory reconsolidation induced by the protein synthesis inhibitor anisomycin and reversed the effects of anisomycin on NSF and glutamate receptor 2 (GluR2) protein levels in the synaptosomal membrane fraction in the NAc core. We also found that lactacystin infusion into the NAc core but not into the shell immediately after extinction training sessions inhibited CPP extinction and reversed the extinction training-induced decrease in NSF and GluR2 in the synaptosomal membrane fraction in the NAc core. Finally, infusions of lactacystin by itself into the NAc core immediately after each training session or before the CPP retrieval test had no effect on the consolidation and retrieval of cocaine reward memory. These findings suggest that ubiquitin-proteasome system-dependent protein degradation is critical for retrieval-induced memory destabilization.

 

通讯机构:Lu, L.; National Institute on Drug Dependence, Peking University, 38 Xue Yuan Road, Beijing, 100191, China
学科代码:精神病学   关键词:addiction; cocaine; extinction ,中国作者重要发表 爱思唯尔医学网, Elseviermed
来源: Scopus
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