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通过基因疗法增强应激后的认知能力。

Enhancing cognition after stress with gene therapy.

作者信息

Nicholas Andrea, Munhoz Carolina D, Ferguson Deveroux, Campbell Laura, Sapolsky Robert

机构信息

Department of Biological Sciences, Stanford University, Stanford, California 94305-5020, USA.

出版信息

J Neurosci. 2006 Nov 8;26(45):11637-43. doi: 10.1523/JNEUROSCI.3122-06.2006.

Abstract

Hippocampal function is essential for the acquisition, consolidation, and retrieval of spatial memory. High circulating levels of glucocorticoids (GCs), the adrenal steroid hormones secreted during stress, have been shown to impair both acquisition and retrieval and can either impair or enhance consolidation, depending on experimental conditions. In contrast, estrogen can enhance spatial memory performance and can block the deleterious effects of GCs on such performance. We therefore constructed a chimeric gene ("ER/GR") containing the hormone-binding domain of the GC receptor and the DNA binding domain of the estrogen receptor; as a result, ER/GR transduces deleterious GC signals into beneficial estrogenic ones. We show here that acute immobilization stress, before acquisition and retrieval phases, increases latencies for male rats in a hidden platform version of the Morris water maze. This impairment is blocked by hippocampal expression of the ER/GR transgene. ER/GR expression also blocks decreases in platform crossings caused by acute stress, either after acquisition or before retrieval. Three days of stress before acquisition produces an estrogen-like enhancement of performance in ER/GR-treated rats. Moreover, ER/GR blocks the suppressive effects of GCs on expression of brain-derived neurotrophic factor (BDNF), a growth factor central to hippocampal-dependent cognition and plasticity, instead producing an estrogenic increase in BDNF expression. Thus, ER/GR expression enhances spatial memory performance and blocks the impairing effects of GCs on such performance.

摘要

海马体功能对于空间记忆的获取、巩固和提取至关重要。糖皮质激素(GCs)是应激期间分泌的肾上腺类固醇激素,其循环水平升高已被证明会损害记忆的获取和提取,并且根据实验条件,既可能损害也可能增强记忆巩固。相比之下,雌激素可以增强空间记忆表现,并能阻断糖皮质激素对这种表现的有害影响。因此,我们构建了一个嵌合基因(“ER/GR”),它包含糖皮质激素受体的激素结合结构域和雌激素受体的DNA结合结构域;结果,ER/GR将有害的糖皮质激素信号转化为有益的雌激素信号。我们在此表明,在获取和提取阶段之前的急性固定应激会增加雄性大鼠在莫里斯水迷宫隐藏平台版本中的潜伏期。这种损害被ER/GR转基因在海马体中的表达所阻断。ER/GR的表达还能阻断急性应激在获取后或提取前导致的平台穿越次数减少。在获取前进行三天的应激会使接受ER/GR处理的大鼠的表现出现类似雌激素的增强。此外,ER/GR阻断了糖皮质激素对脑源性神经营养因子(BDNF)表达的抑制作用,BDNF是海马体依赖性认知和可塑性的核心生长因子,反而使BDNF表达出现雌激素样增加。因此,ER/GR的表达增强了空间记忆表现,并阻断了糖皮质激素对这种表现的损害作用。

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