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GABA 能神经元缺失作为特发性全面性癫痫的发病机制:BRD2 部分功能缺失在青少年肌阵挛性癫痫中的作用。

GABAergic neuron deficit as an idiopathic generalized epilepsy mechanism: the role of BRD2 haploinsufficiency in juvenile myoclonic epilepsy.

机构信息

Department of Cell Biology & Anatomy, New York College of Medicine, Valhalla, New York, United States of America.

出版信息

PLoS One. 2011;6(8):e23656. doi: 10.1371/journal.pone.0023656. Epub 2011 Aug 24.

Abstract

Idiopathic generalized epilepsy (IGE) syndromes represent about 30% of all epilepsies. They have strong, but elusive, genetic components and sex-specific seizure expression. Multiple linkage and population association studies have connected the bromodomain-containing gene BRD2 to forms of IGE. In mice, a null mutation at the homologous Brd2 locus results in embryonic lethality while heterozygous Brd2+/- mice are viable and overtly normal. However, using the flurothyl model, we now show, that compared to the Brd2+/+ littermates, Brd2+/- males have a decreased clonic, and females a decreased tonic-clonic, seizure threshold. Additionally, long-term EEG/video recordings captured spontaneous seizures in three out of five recorded Brd2+/- female mice. Anatomical analysis of specific regions of the brain further revealed significant differences in Brd2+/- vs +/+ mice. Specifically, there were decreases in the numbers of GABAergic (parvalbumin- or GAD67-immunopositive) neurons along the basal ganglia pathway, i.e., in the neocortex and striatum of Brd2+/- mice, compared to Brd2+/+ mice. There were also fewer GABAergic neurons in the substantia nigra reticulata (SNR), yet there was a minor, possibly compensatory increase in the GABA producing enzyme GAD67 in these SNR cells. Further, GAD67 expression in the superior colliculus and ventral medial thalamic nucleus, the main SNR outputs, was significantly decreased in Brd2+/- mice, further supporting GABA downregulation. Our data show that the non-channel-encoding, developmentally critical Brd2 gene is associated with i) sex-specific increases in seizure susceptibility, ii) the development of spontaneous seizures, and iii) seizure-related anatomical changes in the GABA system, supporting BRD2's involvement in human IGE.

摘要

特发性全面性癫痫(IGE)综合征约占所有癫痫的 30%。它们具有强烈但难以捉摸的遗传成分和性别特异性的发作表现。多项连锁和人群关联研究将包含溴结构域的基因 BRD2 与 IGE 形式联系起来。在小鼠中,同源 Brd2 基因座的 null 突变导致胚胎致死,而杂合子 Brd2+/- 小鼠是有活力的且明显正常的。然而,我们现在使用氟烷模型表明,与 Brd2+/+ 同窝仔相比,Brd2+/- 雄性的阵挛发作阈值降低,雌性的强直阵挛发作阈值降低。此外,长期 EEG/视频记录捕捉到五只记录的 Brd2+/- 雌性小鼠中有三只出现自发性发作。对大脑特定区域的解剖分析进一步揭示了 Brd2+/- 与 +/+ 小鼠之间的显著差异。具体而言,与 Brd2+/+ 小鼠相比,Brd2+/- 小鼠沿基底神经节通路(即新皮层和纹状体)的 GABA 能神经元(parvalbumin 或 GAD67-免疫阳性)数量减少。Brd2+/- 小鼠的黑质网状部(SNR)中也有较少的 GABA 能神经元,但这些 SNR 细胞中的 GABA 产生酶 GAD67 有轻微的代偿性增加。此外,Brd2+/- 小鼠中 SNR 的主要输出物上丘和腹内侧丘脑核中的 GAD67 表达明显降低,进一步支持 GABA 下调。我们的数据表明,非通道编码的、发育关键的 Brd2 基因与 i)性别特异性的发作易感性增加,ii)自发性发作的发展,和 iii)GABA 系统中与发作相关的解剖变化有关,支持 BRD2 参与人类 IGE。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5bb7/3161054/12ac1b7825af/pone.0023656.g001.jpg

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