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条件性 TDP-43 小鼠模型额颞叶退行性变中四环素转录激活子和 TDP-43 表达相关的神经毒性差异。

Differential Neurotoxicity Related to Tetracycline Transactivator and TDP-43 Expression in Conditional TDP-43 Mouse Model of Frontotemporal Lobar Degeneration.

机构信息

Cognitive Neurology and Alzheimer's Disease Center.

Department of Psychiatry and Behavioral Science, Northwestern University, Feinberg School of Medicine, Chicago, Illinois 60626.

出版信息

J Neurosci. 2018 Jul 4;38(27):6045-6062. doi: 10.1523/JNEUROSCI.1836-17.2018. Epub 2018 May 28.

Abstract

Frontotemporal lobar degeneration (FTLD) is among the most prevalent dementias of early-onset. Pathologically, FTLD presents with tauopathy or TAR DNA-binding protein 43 (TDP-43) proteinopathy. A biallelic mouse model of FTLD was produced on a mix FVB/129SVE background overexpressing wild-type human TDP-43 (hTDP-43) using tetracycline transactivator (tTA), a system widely used in mouse models of neurological disorders. tTA activates hTDP-43, which is placed downstream of the tetracycline response element. The original study on this transgenic mouse found hippocampal degeneration following hTDP-43 expression, but did not account for independent effects of tTA protein. Here, we initially analyzed the neurotoxic effects of tTA in postweaning age mice of either sex using immunostaining and area measurements of select brain regions. We observed tTA-dependent toxicity selectively in the hippocampus affecting the dentate gyrus significantly more than CA fields, whereas hTDP-43-dependent toxicity in bigenic mice occurred in most other cortical regions. Atrophy was associated with inflammation, activation of caspase-3, and loss of neurons. The atrophy associated with tTA expression was rescuable by the tetracycline analog, doxycycline, in the diet. MRI studies corroborated the patterns of atrophy. tTA-induced degeneration was strain-dependent and was rescued by moving the transgene onto a congenic C57BL/6 background. Despite significant hippocampal atrophy, behavioral tests in bigenic mice revealed no hippocampally mediated memory impairment. Significant atrophy in most cortical areas due solely to TDP-43 expression indicates that this mouse model remains useful for providing critical insight into co-occurrence of TDP-43 pathology, neurodegeneration, and behavioral deficits in FTLD. The tTA expression system has been widely used in mice to model neurological disorders. The technique allows investigators to reversibly turn on or off disease causing genes. Here, we report on a mouse model that overexpresses human TDP-43 using tTA and attempt to recapitulate features of TDP-43 pathology present in human FTLD. The tTA expression system is problematic, resulting in dramatic degeneration of the hippocampus. Thus, our study adds a note of caution for the use of the tTA system. However, because FTLD is primarily characterized by cortical degeneration and our mouse model shows significant atrophy in most cortical areas due to human TDP-43 overexpression, our animal model remains useful for providing critical insight on this human disease.

摘要

额颞叶变性(FTLD)是最常见的早发性痴呆症之一。病理学上,FTLD 表现为tau 病或 TAR DNA 结合蛋白 43(TDP-43)蛋白病。在 FVB/129SVE 混合背景上,通过四环素激活剂(tTA)产生了一种 FTLD 的双等位基因小鼠模型,该系统广泛用于神经疾病的小鼠模型中。tTA 激活了 hTDP-43,后者位于四环素反应元件的下游。关于这种转基因小鼠的最初研究发现,hTDP-43 表达后海马体退化,但没有考虑 tTA 蛋白的独立影响。在这里,我们使用免疫染色和选择脑区的面积测量,初步分析了 tTA 在断奶后雌雄小鼠中的神经毒性作用。我们观察到 tTA 依赖性毒性选择性地影响海马体,对齿状回的影响明显大于 CA 区,而双基因小鼠中的 hTDP-43 依赖性毒性发生在大多数其他皮质区。萎缩与炎症、半胱氨酸天冬氨酸蛋白酶-3 的激活和神经元的丧失有关。饮食中的四环素类似物强力霉素可挽救与 tTA 表达相关的萎缩。MRI 研究证实了萎缩的模式。tTA 诱导的变性与品系有关,并可通过将转基因转移到同源 C57BL/6 背景上来挽救。尽管海马体明显萎缩,但双基因小鼠的行为测试并未发现与海马体介导的记忆障碍有关。仅由于 TDP-43 表达而导致的大多数皮质区的明显萎缩表明,该小鼠模型仍然可用于深入了解 TDP-43 病理学、神经退行性变和 FTLD 中的行为缺陷的共同发生。tTA 表达系统已广泛用于小鼠以模拟神经退行性疾病。该技术允许研究人员可逆地开启或关闭致病基因。在这里,我们报告了一种使用 tTA 过表达人 TDP-43 的小鼠模型,并试图重现人类 FTLD 中存在的 TDP-43 病理学特征。tTA 表达系统存在问题,导致海马体严重退化。因此,我们的研究对 tTA 系统的使用提出了警告。然而,由于 FTLD 主要表现为皮质变性,并且我们的小鼠模型由于人 TDP-43 过表达而导致大多数皮质区明显萎缩,因此我们的动物模型仍然可用于深入了解这种人类疾病。

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