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G蛋白信号通路调节剂:对苯丙胺的反应中mRNA丰度的快速变化。

Regulators of G protein signaling: rapid changes in mRNA abundance in response to amphetamine.

作者信息

Burchett S A, Volk M L, Bannon M J, Granneman J G

机构信息

Department of Psychiatry and Behavioral Neurosciences, Wayne State University School of Medicine, Detroit, Michigan 48201, USA.

出版信息

J Neurochem. 1998 May;70(5):2216-9. doi: 10.1046/j.1471-4159.1998.70052216.x.

Abstract

This study examined mRNAs encoding regulators of G protein signaling (RGSs) expressed within the striatum and determined whether their expression in the caudate putamen was altered by amphetamine. RT-PCR techniques were used to clone cDNA probes of RGSs expressed within the rat striatum. Northern blot analysis of caudate putamen and nucleus accumbens RNA determined the relative abundance of RGS mRNA expressed within the caudate putamen and adjacent nucleus accumbens to be RGS 2 > RGS 5 > RGS 16 > RGS 4 = RGS 9 > RGS 8 = RGS 3. A single injection of amphetamine rapidly and transiently induced RGS 2 mRNA. The temporal pattern of induction of RGS 2 strongly resembled that of the immediate early gene c-fos. Levels of mRNAs of RGS 3 and 5 steadily increased over a 4-h interval, as did that of the 6.6-kb transcript of RGS 8. The level of RGS 9 mRNA, which shows strong striatal-specific expression, steadily decreased over a 4-h interval, whereas RGS 4 and 16 and the 3.9-kb transcript of RGS 8 were not significantly affected at any point examined. The ability of amphetamine to alter RGS mRNA expression within the caudate putamen suggests these proteins may play an important role in adaptive processes to psychostimulant exposure.

摘要

本研究检测了纹状体内表达的G蛋白信号调节因子(RGSs)的编码mRNA,并确定其在尾状壳核中的表达是否会因苯丙胺而改变。采用RT-PCR技术克隆大鼠纹状体内表达的RGSs的cDNA探针。对尾状壳核和伏隔核RNA进行Northern印迹分析,确定尾状壳核及相邻伏隔核中表达的RGS mRNA的相对丰度为RGS 2 > RGS 5 > RGS 16 > RGS 4 = RGS 9 > RGS 8 = RGS 3。单次注射苯丙胺可快速且短暂地诱导RGS 2 mRNA表达。RGS 2的诱导时间模式与即刻早期基因c-fos的非常相似。RGS 3和5的mRNA水平在4小时内稳步上升,RGS 8的6.6 kb转录本水平也是如此。显示出强烈纹状体特异性表达的RGS 9 mRNA水平在4小时内稳步下降,而RGS 4和16以及RGS 8的3.9 kb转录本在任何检测时间点均未受到显著影响。苯丙胺改变尾状壳核内RGS mRNA表达的能力表明,这些蛋白质可能在对精神兴奋剂暴露的适应性过程中发挥重要作用。

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