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β-抑制蛋白2对自愿性乙醇摄入的调节作用

Modulation of voluntary ethanol consumption by beta-arrestin 2.

作者信息

Björk K, Rimondini R, Hansson A C, Terasmaa A, Hyytiä P, Heilig M, Sommer W H

机构信息

Laboratory of Clinical and Translational Studies, NIAAA/NIH, 10 Center Dr., Bethesda, MD 20892-1108, USA.

出版信息

FASEB J. 2008 Jul;22(7):2552-60. doi: 10.1096/fj.07-102442. Epub 2008 Mar 26.

Abstract

Beta-arrestin 2 is a multifunctional key component of the G protein-coupled receptor complex and is involved in mu-opiate and dopamine D2 receptor signaling, both of which are thought to mediate the rewarding effects of ethanol consumption. We identified elevated expression of the beta-arrestin 2 gene (Arrb2) in the striatum and the hippocampus of ethanol-preferring AA rats compared to their nonpreferring counterpart ANA line. Differential mRNA expression was accompanied by different levels of Arrb2 protein. The elevated expression was associated with a 7-marker haplotype in complete linkage disequilibrium, which segregated fully between the lines, and was unique to the preferring line. Furthermore, a single, distinct, and highly significant quantitative trait locus for Arrb2 expression in hippocampus and striatum was identified at the locus of this gene, providing evidence that genetic variation may affect a cis-regulatory mechanism for expression and regional control of Arrb2. These findings were functionally validated using mice lacking Arrb2, which displayed both reduced voluntary ethanol consumption and ethanol-induced psychomotor stimulation. Our results demonstrate that beta-arrestin 2 modulates acute responses to ethanol and is an important mediator of ethanol reward.

摘要

β-抑制蛋白2是G蛋白偶联受体复合物的多功能关键成分,参与μ-阿片受体和多巴胺D2受体信号传导,这两种受体均被认为介导了乙醇摄入的奖赏效应。我们发现,与非嗜酒的ANA品系相比,嗜酒的AA大鼠纹状体和海马体中β-抑制蛋白2基因(Arrb2)的表达升高。mRNA表达差异伴随着不同水平的Arrb2蛋白。这种升高的表达与一个处于完全连锁不平衡状态的7标记单倍型相关,该单倍型在两个品系间完全分离,且仅存在于嗜酒品系中。此外,在该基因位点发现了一个单一、独特且高度显著的海马体和纹状体中Arrb2表达的数量性状位点,这表明遗传变异可能影响Arrb2表达的顺式调控机制及其区域控制。使用缺乏Arrb2的小鼠对这些发现进行了功能验证,这些小鼠表现出自愿乙醇摄入量减少以及乙醇诱导的精神运动性兴奋降低。我们的结果表明,β-抑制蛋白2调节对乙醇的急性反应,是乙醇奖赏的重要介导因子。

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