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表达伪狂犬病病毒立即早期蛋白IE180的转基因小鼠的小脑病理学

Cerebellar pathology in transgenic mice expressing the pseudorabies virus immediate-early protein IE180.

作者信息

Tomioka Yukiko, Miyazaki Taisuke, Taharaguchi Satoshi, Yoshino Saori, Morimatsu Masami, Uede Toshimitsu, Ono Etsuro, Watanabe Masahiko

机构信息

Laboratory of Animal Experiment for Disease Model, Institute for Genetic Medicine, Hokkaido University, Sapporo, Japan.

出版信息

Eur J Neurosci. 2008 Apr;27(8):2115-32. doi: 10.1111/j.1460-9568.2008.06174.x.

Abstract

Pseudorabies virus is an alphaherpesvirus causing fatal neurological diseases in animals. Pseudorabies virus carries a gene encoding immediate-early (IE) protein IE180, which controls the transcription of other viral and host cell genes. Previously, we reported that transgenic expression of IE180 in mice causes severe ataxia and cerebellar deformity. Here we identified profound abnormalities in adult IE180 transgenic mice, including malpositioning of Purkinje cells (PCs), granule cells (GCs) and Bergmann glia (BG), impaired dendritogenesis and synaptogenesis in PCs, disoriented BG fibers, absence of molecular layer interneurons, and increased apoptosis of neurons and glia. In accordance with the cellular defects, we found the expression of IE180 in PCs, GCs and astrocytes during cerebellar development. We next examined transgenic mice expressing truncated IE180 mutants: dlN132 lacking the acidic transcriptional active domain, dlC629 lacking the nuclear localization signal and dlC1081 having all known domains but lacking the carboxyl-terminal sequence. Despite similar expression levels of the transgenes, ataxia and cerebellar defects were only manifested in the dlC1081 transgenic mice but their phenotypes were milder compared with the IE180 transgenic mice. In the dlC1081 transgenic mice, cerebellar neurons and glia were normally positioned but cerebellar size was severely reduced due to GC deficits. Interestingly, dlC1081 was mainly expressed in the GCs with low expression in a few BG. Taken together, the present findings clarified a causal relationship between cerebellar pathology and cellular expression of IE180, and further afforded an experimental insight into different symptomatic severity as a consequence of different cellular defects caused by such cytotoxic viral agents.

摘要

伪狂犬病病毒是一种甲型疱疹病毒,可导致动物致命的神经疾病。伪狂犬病病毒携带一个编码立即早期(IE)蛋白IE180的基因,该蛋白控制其他病毒和宿主细胞基因的转录。此前,我们报道过IE180在小鼠中的转基因表达会导致严重共济失调和小脑畸形。在此,我们鉴定出成年IE180转基因小鼠存在严重异常,包括浦肯野细胞(PCs)、颗粒细胞(GCs)和伯格曼胶质细胞(BG)位置异常,PCs中树突发生和突触发生受损,BG纤维方向紊乱,分子层中间神经元缺失,以及神经元和胶质细胞凋亡增加。与细胞缺陷一致,我们发现在小脑发育过程中,PCs、GCs和星形胶质细胞中有IE180的表达。接下来,我们检测了表达截短IE180突变体的转基因小鼠:缺少酸性转录活性结构域的dlN132、缺少核定位信号的dlC629以及具有所有已知结构域但缺少羧基末端序列的dlC1081。尽管转基因表达水平相似,但共济失调和小脑缺陷仅在dlC1081转基因小鼠中表现出来,但其表型比IE180转基因小鼠更轻。在dlC1081转基因小鼠中,小脑神经元和胶质细胞位置正常,但由于GCs数量不足,小脑大小严重减小。有趣的是,dlC1081主要在GCs中表达,在少数BG中低表达。综上所述,本研究结果阐明了小脑病理与IE180细胞表达之间的因果关系,并进一步为这类细胞毒性病毒因子导致的不同细胞缺陷所引起的不同症状严重程度提供了实验性见解。

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