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II类组蛋白去乙酰化酶在两种颞叶癫痫小鼠模型中的表达

Expression of class II histone deacetylases in two mouse models of temporal lobe epilepsy.

作者信息

Jagirdar Rohan, Drexel Meinrad, Bukovac Anneliese, Tasan Ramon O, Sperk Günther

机构信息

Department of Pharmacology, Medical University Innsbruck, Innsbruck, Austria.

出版信息

J Neurochem. 2016 Feb;136(4):717-730. doi: 10.1111/jnc.13440. Epub 2015 Dec 28.

Abstract

Epigenetic mechanisms like altered histone acetylation may have a crucial role in epileptogenesis. In two mouse models of temporal lobe epilepsy, we investigated changes in the expression of class II histone deacetylases (HDAC), a group of signal transducers that shuttle between nucleus and cytoplasm. Intrahippocampal injection of kainic acid (KA) induced a status epilepticus, development of spontaneous seizures (after 3 days), and finally chronic epilepsy and granule cell dispersion. Expression of class II HDAC mRNAs was investigated at different time intervals after KA injection in the granule cell layers and in sectors CA1 and CA3 contralateral to the site of KA injection lacking neurodegeneration. Increased expression of HDAC5 and 9 mRNAs coincided with pronounced granule cell dispersion in the KA-injected hippocampus at late intervals (14-28 days after KA) and equally affected both HDAC9 splice variants. In contrast, in the pilocarpine model (showing no granule cell dispersion), we observed decreases in the expression of HDAC5 and 9 at the same time intervals. Beyond this, striking similarities between both temporal lobe epilepsy models such as fast decreases in HDAC7 and 10 mRNAs during the acute status epilepticus were observed, notably also in the contralateral hippocampus not affected by neurodegeneration. The particular patterns of HDAC mRNA expression suggest a role in epileptogenesis and granule cell dispersion. Reduced expression of HDACs may result in increased expression of pro- and anticonvulsive proteins. On the other hand, export of HDACs from the nucleus into the cytoplasm could allow for deacetylation of cytoplasmatic proteins involved in axonal and dendritic remodeling, like granule cell dispersion. HDAC 5 and HDAC 9 expression is highly increased in granule cells of the KA-injected hippocampus and parallels granule cell dispersion. Both HDACs are thought to be targeted to the cytoplasm and to act there by deacetylating cytoplasmatic (e.g. cytosceleton-related) proteins.

摘要

诸如组蛋白乙酰化改变等表观遗传机制可能在癫痫发生中起关键作用。在两种颞叶癫痫小鼠模型中,我们研究了II类组蛋白去乙酰化酶(HDAC)的表达变化,HDAC是一组在细胞核和细胞质之间穿梭的信号转导分子。海马内注射 kainic acid(KA)可诱发癫痫持续状态、自发性癫痫发作(3天后),最终导致慢性癫痫和颗粒细胞弥散。在KA注射后不同时间间隔,在颗粒细胞层以及KA注射部位对侧缺乏神经变性的CA1和CA3区,研究II类HDAC mRNA的表达。HDAC5和9 mRNA的表达增加与KA注射海马晚期(KA后14 - 28天)明显的颗粒细胞弥散同时出现,并且同样影响了HDAC9的两种剪接变体。相比之下,在匹罗卡品模型(未显示颗粒细胞弥散)中,我们在相同时间间隔观察到HDAC5和9的表达降低。除此之外,在两种颞叶癫痫模型之间观察到显著相似之处,例如在急性癫痫持续状态期间HDAC7和10 mRNA快速下降,特别是在未受神经变性影响的对侧海马中也是如此。HDAC mRNA表达的特定模式表明其在癫痫发生和颗粒细胞弥散中起作用。HDAC表达降低可能导致促惊厥和抗惊厥蛋白表达增加。另一方面,HDAC从细胞核输出到细胞质中可使参与轴突和树突重塑的细胞质蛋白(如颗粒细胞弥散)去乙酰化。HDAC 5和HDAC 9在KA注射海马的颗粒细胞中表达高度增加,并与颗粒细胞弥散平行。两种HDAC都被认为定位于细胞质,并通过使细胞质(如细胞骨架相关)蛋白去乙酰化而在那里发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d28c/4738395/35dad784be8e/JNC-136-717-g001.jpg

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