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FosB 对于增强应激耐受至关重要,并拮抗 ΔFosB 引起的运动敏化。

FosB is essential for the enhancement of stress tolerance and antagonizes locomotor sensitization by ΔFosB.

机构信息

Division of Neurofunctional Genomics, Department of Immunobiology and Neuroscience, Medical Institute of Bioregulation, Kyushu University, Fukuoka, Japan; Fishberg Department of Neuroscience, Mount Sinai School of Medicine, New York, New York, USA.

出版信息

Biol Psychiatry. 2011 Sep 1;70(5):487-95. doi: 10.1016/j.biopsych.2011.04.021. Epub 2011 Jun 15.

Abstract

BACKGROUND

Molecular mechanisms underlying stress tolerance and vulnerability are incompletely understood. The fosB gene is an attractive candidate for regulating stress responses, because ΔFosB, an alternative splice product of the fosB gene, accumulates after repeated stress or antidepressant treatments. On the other hand, FosB, the other alternative splice product of the fosB gene, expresses more transiently than ΔFosB but exerts higher transcriptional activity. However, the functional differences of these two fosB products remain unclear.

METHODS

We established various mouse lines carrying three different types of fosB allele, wild-type (fosB(+)), fosB-null (fosB(G)), and fosB(d) allele, which encodes ΔFosB but not FosB, and analyzed them in stress-related behavioral tests.

RESULTS

Because fosB(+/d) mice show enhanced ΔFosB levels in the presence of FosB and fosB(d/d) mice show more enhanced ΔFosB levels in the absence of FosB, the function of FosB can be inferred from differences observed between these lines. The fosB(+/d) and fosB(d/d) mice showed increased locomotor activity and elevated Akt phosphorylation, whereas only fosB(+/d) mice showed antidepressive-like behaviors and increased E-cadherin expression in striatum compared with wild-type mice. In contrast, fosB-null mice showed increased depression-like behavior and lower E-cadherin expression.

CONCLUSIONS

These findings indicate that FosB is essential for stress tolerance mediated by ΔFosB. These data suggest that fosB gene products have a potential to regulate mood disorder-related behaviors.

摘要

背景

压力耐受和脆弱性的分子机制尚不完全清楚。fosB 基因是调节应激反应的一个有吸引力的候选基因,因为重复应激或抗抑郁治疗后会积累 fosB 基因的另一个剪接产物 ΔFosB。另一方面,fosB 基因的另一个剪接产物 FosB 的表达比 ΔFosB 更短暂,但具有更高的转录活性。然而,这两种 fosB 产物的功能差异尚不清楚。

方法

我们建立了携带三种不同类型 fosB 等位基因的各种小鼠品系,野生型(fosB(+))、fosB 缺失(fosB(G))和 fosB(d)等位基因,该基因编码 ΔFosB 但不编码 FosB,并在应激相关行为测试中对它们进行了分析。

结果

由于 fosB(+/d) 小鼠在存在 FosB 的情况下表现出增强的 ΔFosB 水平,而 fosb(d/d) 小鼠在不存在 FosB 的情况下表现出更增强的 ΔFosB 水平,因此可以从这些品系之间观察到的差异推断 FosB 的功能。fosb(+/d) 和 fosb(d/d) 小鼠表现出运动活性增加和 Akt 磷酸化升高,而只有 fosb(+/d) 小鼠与野生型小鼠相比表现出抗抑郁样行为和纹状体中 E-钙粘蛋白表达增加。相比之下,fosb 缺失小鼠表现出抑郁样行为增加和 E-钙粘蛋白表达降低。

结论

这些发现表明 FosB 是 ΔFosB 介导的压力耐受所必需的。这些数据表明 fosB 基因产物有可能调节与情绪障碍相关的行为。

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