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C57BL/6J和C57BL/6NJ小鼠中Cyfip2等位基因变异改变了自由选择的乙醇饮用量,但不影响暴饮样饮酒或转轮活动。

Cyfip2 allelic variation in C57BL/6J and C57BL/6NJ mice alters free-choice ethanol drinking but not binge-like drinking or wheel-running activity.

作者信息

Hartmann Matthew C, McCulley Walter D, Holbrook Sarah E, Haney Megan M, Smith Caitlin G, Kumar Vivek, Rosenwasser Alan M

机构信息

Graduate School of Biomedical Science and Engineering, University of Maine, Orono, Maine, USA.

Department of Psychology, University of Maine, Orono, Maine, USA.

出版信息

Alcohol Clin Exp Res (Hoboken). 2023 Aug;47(8):1518-1529. doi: 10.1111/acer.15137. Epub 2023 Jul 10.

Abstract

BACKGROUND

Since the origin of the C57BL/6 (B6) mouse strain, several phenotypically and genetically distinct B6 substrains have emerged. For example, C57BL/6J mice (B6J) display greater voluntary ethanol consumption and locomotor response to psychostimulants and differences in nucleus accumbens synaptic physiology relative to C57BL/6N (B6N) mice. A non-synonymous serine to phenylalanine point mutation (S968F) in the cytoplasmic FMR1-interacting protein 2 (Cyfip2) gene underlies both the differential locomotor response to cocaine and the accumbal physiology exhibited by these substrains. We examined whether Cyfip2 allelic variation underlies B6 substrain differences in other reward-related phenotypes, such as ethanol intake and wheel-running activity.

METHODS

We compared voluntary ethanol consumption, wheel-running, and binge-like ethanol drinking in male and female B6J and B6NJ mice. When substrain differences were observed, additional experiments were performed in two novel mouse models in which the B6N Cyfip2 mutation was either introduced (S968F) into the B6J background or corrected (F968S) via CRISPR/Cas9 technology.

RESULTS

B6J consumed significantly more ethanol than B6NJ and allelic variation in Cyfip2 contributed substantially to this substrain difference. In contrast, B6NJ displayed significantly more daily wheel-running than B6J, with Cyfip2 allelic variation playing only a minor role in this substrain difference. Lastly, no substrain differences were observed in binge-like ethanol drinking.

CONCLUSIONS

These results contribute to the characterization of behavior-genetic differences between B6 substrains, support previous work indicating that free-choice and binge-like ethanol drinking are dependent on partially distinct genetic networks, and identify a novel phenotypic difference between B6 substrains in wheel-running activity.

摘要

背景

自C57BL/6(B6)小鼠品系起源以来,出现了几个表型和基因上不同的B6亚系。例如,与C57BL/6N(B6N)小鼠相比,C57BL/6J小鼠(B6J)表现出更高的自愿乙醇消耗量以及对精神兴奋剂的运动反应,并且伏隔核突触生理学存在差异。细胞质FMR1相互作用蛋白2(Cyfip2)基因中的一个非同义丝氨酸到苯丙氨酸点突变(S968F)是这些亚系对可卡因的不同运动反应和伏隔核生理学的基础。我们研究了Cyfip2等位基因变异是否是B6亚系在其他与奖励相关的表型(如乙醇摄入量和转轮活动)差异的基础。

方法

我们比较了雄性和雌性B6J和B6NJ小鼠的自愿乙醇消耗量、转轮活动和暴饮样乙醇饮用情况。当观察到亚系差异时,在两个新的小鼠模型中进行了额外的实验,其中B6N Cyfip2突变要么被引入(S968F)到B6J背景中,要么通过CRISPR/Cas9技术进行校正(F968S)。

结果

B6J消耗的乙醇明显多于B6NJ,并且Cyfip2中的等位基因变异对这种亚系差异有很大贡献。相反,B6NJ每天的转轮活动明显多于B6J,Cyfip2等位基因变异在这种亚系差异中只起次要作用。最后,在暴饮样乙醇饮用方面未观察到亚系差异。

结论

这些结果有助于表征B6亚系之间的行为遗传差异,支持先前的研究表明自由选择和暴饮样乙醇饮用依赖于部分不同的遗传网络,并确定了B6亚系在转轮活动方面的一种新的表型差异。

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