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RACK1,一种降低小鼠吗啡奖赏效应的潜在靶点。

RACK1, a potential target to decrease morphine reward in mice.

作者信息

Liu Q F, Wang X, Yuan Q, Liu Y Y, Lu R, Wang Y H, Jiang Z, Wang Z R

机构信息

Key Laboratory of Chronobiology, Ministry of Health (Sichuan University), Sichuan University, Chengdu, China.

出版信息

Arch Ital Biol. 2009 Dec;147(4):131-40.

Abstract

Morphine reexposure induces the decrease of receptor for activated C-kinase 1 protein (RACK1) levels in frontal cortex, and the increase of p-ERK (extracellular signal-regulated kinase) levels in mouse frontal cortex, striatum, hippocampus and nucleus accumbens (NAcc). Moreover, RACK1 is associated with the core kinases of the ERK pathway, Raf, MEK, and ERK. The purpose of this study is to investigate the effect of overexpression of RACK1 on the conditioned place preference (CPP) and the level of p-ERK in morphine reexposure mice. Mice were subcutaneously injected with morphine on the 2nd, 4th, 6th, and the 8th day, saline was delivered the next day. After mice showed place preference, RACK1 was administered by intraventricular injection 20 minutes after injection of morphine on the 11th, 13th, 15th, and 17th day. CPP was measured on the 18th day. It was found that morphine reexposured mice showed a decreased RACK1 level in the frontal cortex, striatum and an increased RACK1 level in hippocampus and NAcc, but this effect was reversed after administration of RACK1. In this study we demonstrated that RACK1 decreased p-ERK and erased CPP during reexposure of morphine and there was no an effect in reexposure saline mice. It strongly suggests that RACK1 may play a crucial role in morphine reexposured mice and the RACK1 has the potential to be a remedy to the morphine reward.

摘要

吗啡再次暴露可导致小鼠额叶皮质中活化C激酶1蛋白(RACK1)水平降低,以及小鼠额叶皮质、纹状体、海马体和伏隔核(NAcc)中磷酸化细胞外信号调节激酶(p-ERK)水平升高。此外,RACK1与ERK通路的核心激酶Raf、MEK和ERK相关。本研究的目的是探讨RACK1过表达对吗啡再次暴露小鼠条件性位置偏爱(CPP)及p-ERK水平的影响。在第2、4、6和8天给小鼠皮下注射吗啡,次日注射生理盐水。在小鼠表现出位置偏爱后,于第11、13、15和17天在注射吗啡20分钟后通过脑室内注射给予RACK1。在第18天测量CPP。结果发现,吗啡再次暴露的小鼠额叶皮质和纹状体中RACK1水平降低,海马体和NAcc中RACK1水平升高,但给予RACK1后这种效应得到逆转。在本研究中,我们证明RACK1在吗啡再次暴露期间可降低p-ERK并消除CPP,而在再次暴露于生理盐水的小鼠中则无此效应。这强烈表明RACK1可能在吗啡再次暴露的小鼠中起关键作用,并且RACK1有潜力成为治疗吗啡奖赏的药物。

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