首页> 美国卫生研究院文献>The Journal of Neuroscience >Late-Life Environmental Enrichment Induces Acetylation Events and Nuclear Factor κB-Dependent Regulations in the Hippocampus of Aged Rats Showing Improved Plasticity and Learning
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Late-Life Environmental Enrichment Induces Acetylation Events and Nuclear Factor κB-Dependent Regulations in the Hippocampus of Aged Rats Showing Improved Plasticity and Learning

机译:衰老的环境充实在衰老大鼠海马中诱导乙酰化事件和依赖核因子κB的调节表现出更好的可塑性和学习能力

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摘要

Aging weakens memory functions. Exposing healthy rodents or pathological rodent models to environmental enrichment (EE) housing improves their cognitive functions by changing neuronal levels of excitation, cellular signaling, and plasticity, notably in the hippocampus. At the molecular level, brain derived-neurotrophic factor (BDNF) represents an important player that supports EE-associated changes. EE facilitation of learning was also shown to correlate with chromatin acetylation in the hippocampus. It is not known, however, whether such mechanisms are still into play during aging. In this study, we exposed a cohort of aged rats (18-month-old) to either a 6 month period of EE or standard housing conditions and investigated chromatin acetylation-associated events [histone acetyltranferase activity, gene expression, and histone 3 (H3) acetylation] and epigenetic modulation of the Bdnf gene under rest conditions and during learning. We show that EE leads to upregulation of acetylation-dependent mechanisms in aged rats, whether at rest or following a learning challenge. We found an increased expression of Bdnf through Exon-I-dependent transcription, associated with an enrichment of acetylated H3 at several sites of Bdnf promoter I, more particularly on a proximal nuclear factor κB (NF-κB) site under learning conditions. We further evidenced p65/NF-κB binding to chromatin at promoters of genes important for plasticity and hippocampus-dependent learning (e.g., Bdnf, CamK2D). Altogether, our findings demonstrate that aged rats respond to a belated period of EE by increasing hippocampal plasticity, together with activating sustained acetylation-associated mechanisms recruiting NF-κB and promoting related gene transcription. These responses are likely to trigger beneficial effects associated with EE during aging.>SIGNIFICANCE STATEMENT Aging weakens memory functions. Optimizing the neuronal circuitry required for normal brain function can be achieved by increasing sensory, motor, and cognitive stimuli resulting from interactions with the environment (behavioral therapy). This can be experimentally modeled by exposing rodents to environmental enrichment (EE), as with large cages, numerous and varied toys, and interaction with other rodents. However, EE effects in aged rodents has been poorly studied, and it is not known whether beneficial mechanisms evidenced in the young adults can still be recruited during aging. Our study shows that aged rats respond to a belated period of EE by activating specific epigenetic and transcriptional signaling that promotes gene expression likely to facilitate plasticity and learning behaviors.
机译:老化会削弱存储功能。将健康的啮齿动物或病理性啮齿动物模型暴露于环境富集(EE)住房,可以通过改变神经元兴奋程度,细胞信号传导和可塑性,尤其是海马中的神经元水平来改善其认知功能。在分子水平上,脑源性神经营养因子(BDNF)代表了支持EE相关变化的重要参与者。 EE促进学习也显示与海马中的染色质乙酰化相关。但是,尚不知道这种机制在老化过程中是否仍在起作用。在这项研究中,我们将一组年龄较大的大鼠(18个月大)暴露于6个月的EE或标准居住条件下,并研究了染色质乙酰化相关事件[组蛋白乙酰转移酶活性,基因表达和组蛋白3(H3 )[乙酰化]和Bdnf基因的表观遗传调控。我们表明,无论在静止状态还是学习挑战后,EE均可导致老年大鼠乙酰化依赖性机制的上调。我们发现通过Exon-I依赖性转录增加了Bdnf的表达,这与Bdnf启动子I的多个位点,特别是在学习条件下近端核因子κB(NF-κB)位置上乙酰化H3的富集有关。我们进一步证明了p65 /NF-κB在可塑性和海马依赖性学习重要基因(例如Bdnf,CamK2D)的启动子上与染色质结合。总而言之,我们的研究结果表明,老年大鼠通过增加海马可塑性,激活持续的乙酰化相关机制招募NF-κB并促进相关基因转录,来响应EE的迟发期。这些反应可能会在衰老期间引发与EE相关的有益影响。>显着性声明。衰老会削弱记忆功能。可以通过增加与环境相互作用(行为疗法)引起的感觉,运动和认知刺激来优化大脑正常功能所需的神经元电路。可以通过将啮齿动物暴露于环境富集(EE)(例如大型笼子,大量多样的玩具以及与其他啮齿动物的相互作用)来进行实验建模。但是,对衰老的啮齿动物的EE效应研究很少,尚不知道在衰老过程中是否仍能招募年轻人中证明的有益机制。我们的研究表明,成年大鼠通过激活特定的表观遗传学和转录信号传导,从而促进可能的可塑性和学习行为的基因表达,从而对迟来的EE做出反应。

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