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在TauP301L - BiFC转基因小鼠中可溶性tau寡聚体的可视化显示了tau蛋白病的进展。

Visualization of soluble tau oligomers in TauP301L-BiFC transgenic mice demonstrates the progression of tauopathy.

作者信息

Shin Seulgi, Kim Dohee, Song Ji Yeon, Jeong Hyeanjeong, Hyeon Seung Jae, Kowall Neil W, Ryu Hoon, Pae Ae Nim, Lim Sungsu, Kim Yun Kyung

机构信息

Convergence Research Center for Diagnosis, Treatment and Care System of Dementia, Brain Science Institute, Korea Institute of Science and Technology (KIST), Seoul, 02792, Republic of Korea; Division of Bio-Medical Science & Technology, KIST School, University of Science and Technology (UST), Seoul, 02792, Republic of Korea.

Convergence Research Center for Diagnosis, Treatment and Care System of Dementia, Brain Science Institute, Korea Institute of Science and Technology (KIST), Seoul, 02792, Republic of Korea.

出版信息

Prog Neurobiol. 2020 Feb 24:101782. doi: 10.1016/j.pneurobio.2020.101782.

Abstract

Accumulation of abnormal tau aggregates in the brain is a pathological hallmark of multiple neurodegenerative disorders including Alzheimer's disease. Increasing evidence suggests that soluble tau aggregates play a key role in tau pathology as neurotoxic species causing neuronal cell death and act as prion-like seeds mediating tau propagation. Despite the pathological relevance, there is a paucity of methods to monitor tau oligomerization in the brain. As a tool to monitor tau self-assembly in the brain, we generated a novel tau transgenic mouse, named TauP301L-BiFC. By introducing bimolecular fluorescence complementation technique to human tau containing a P301L mutation, we were able to monitor and quantify tau self-assembly, represented by BiFC fluorescence in the brains of transgenic TauP301L-BiFC mice. TauP301L-BiFC mice showed soluble tau oligomerization from 3 months, showing significantly enriched BiFC fluorescence in the brain. Then, massive tau fragmentation occured at 6 months showing dramatically decreased TauP301L-BiFC fluorescence. The fragmented tau species served as a seed for insoluble tau aggregation. In a result, insoluble TauP301L-BiFC aggregates coaggregated with endogenous mouse tau accumulated in the brain, showing subsequently increased BiFC fluorescence from 9 months. Neuronal degeneration and cognitive deficits were observed from 12 months of age. TauP301L-BiFC mouse model demonstrated that methylene blue reduced the amount of soluble tau oligomers in the brain, resulting in the prevention of cognitive impairments. We assure that TauP301L-BiFC mice are a bona-fide animal tool to monitor pathological tau oligomerization in AD and other tauopathies.

摘要

大脑中异常tau聚集体的积累是包括阿尔茨海默病在内的多种神经退行性疾病的病理标志。越来越多的证据表明,可溶性tau聚集体在tau病理中起关键作用,作为导致神经元细胞死亡的神经毒性物质,并作为介导tau传播的朊病毒样种子。尽管具有病理相关性,但监测大脑中tau寡聚化的方法却很匮乏。作为监测大脑中tau自组装的工具,我们构建了一种新型的tau转基因小鼠,命名为TauP301L-BiFC。通过将双分子荧光互补技术引入含有P301L突变的人tau中,我们能够监测和量化tau自组装,以转基因TauP301L-BiFC小鼠大脑中的双分子荧光互补荧光表示。TauP301L-BiFC小鼠从3个月开始出现可溶性tau寡聚化,大脑中的双分子荧光互补荧光显著增强。然后,在6个月时发生大量tau片段化,TauP301L-BiFC荧光显著降低。片段化的tau物种作为不溶性tau聚集的种子。结果,不溶性TauP301L-BiFC聚集体与大脑中积累的内源性小鼠tau共聚集,随后从9个月开始双分子荧光互补荧光增加。从12个月大开始观察到神经元变性和认知缺陷。TauP301L-BiFC小鼠模型表明,亚甲蓝减少了大脑中可溶性tau寡聚体的数量,从而预防了认知障碍。我们确信TauP301L-BiFC小鼠是监测阿尔茨海默病和其他tau蛋白病中病理性tau寡聚化的可靠动物工具。

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