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rTg4510 小鼠的相互 F1 杂种之间 tau 病理学的差异积累。

Differential accumulation of tau pathology between reciprocal F1 hybrids of rTg4510 mice.

机构信息

Molecular Neuroscience Research Center, Shiga University of Medical Science, Seta Tsukinowa-Cho, Otsu, 520-2192, Japan.

Institute of Systems Biology (INBIOSIS), Universiti Kebangsaan Malaysia, 43600, UKM Bangi, Selangor, Malaysia.

出版信息

Sci Rep. 2021 May 5;11(1):9623. doi: 10.1038/s41598-021-89142-2.

Abstract

Tau, a family of microtubule-associated proteins, forms abnormal intracellular inclusions, so-called tau pathology, in a range of neurodegenerative diseases collectively known as tauopathies. The rTg4510 mouse model is a well-characterized bitransgenic F1 hybrid mouse model of tauopathy, which was obtained by crossing a Camk2α-tTA mouse line (on a C57BL/6 J background) with a tetO-MAPT*P301L mouse line (on a FVB/NJ background). The aim of this study was to investigate the effects of the genetic background and sex on the accumulation of tau pathology in reciprocal F1 hybrids of rTg4510 mice, i.e., rTg4510 on the (C57BL/6 J × FVB/NJ)F1 background (rTg4510_CxF) and on the (FVB/NJ × C57BL/6 J)F1 background (rTg4510_FxC). As compared with rTg4510_CxF mice, the rTg4510_FxC mice showed marked levels of tau pathology in the forebrain. Biochemical analyses indicated that the accumulation of abnormal tau species was accelerated in rTg4510_FxC mice. There were strong effects of the genetic background on the differential accumulation of tau pathology in rTg4510 mice, while sex had no apparent effect. Interestingly, midline-1 (Mid1) was identified as a candidate gene associated with this difference and exhibited significant up/downregulation according to the genetic background. Mid1 silencing with siRNA induced pathological phosphorylation of tau in HEK293T cells that stably expressed human tau with the P301L mutation, suggesting the role of Mid1 in pathological alterations of tau. Elucidation of the underlying mechanisms will provide novel insights into the accumulation of tau pathology and is expected to be especially informative to researchers for the continued development of therapeutic interventions for tauopathies.

摘要

tau 是微管相关蛋白家族的一员,在一系列被统称为 tau 病的神经退行性疾病中,tau 会形成异常的细胞内包含物,即所谓的 tau 病理学。Tg4510 小鼠模型是一种经过充分研究的 tau 病双转基因 F1 杂交小鼠模型,它是通过将 Camk2α-tTA 小鼠品系(C57BL/6J 背景)与 tetO-MAPT*P301L 小鼠品系(FVB/NJ 背景)杂交获得的。本研究的目的是研究遗传背景和性别对 rTg4510 小鼠的 F1 杂交后代 tau 病理学积累的影响,即在(C57BL/6J×FVB/NJ)F1 背景下的 rTg4510(rTg4510_CxF)和在(FVB/NJ×C57BL/6J)F1 背景下的 rTg4510(rTg4510_FxC)。与 rTg4510_CxF 小鼠相比,rTg4510_FxC 小鼠的前脑 tau 病理学明显增加。生化分析表明,rTg4510_FxC 小鼠中异常 tau 物种的积累加速。遗传背景对 rTg4510 小鼠 tau 病理学的差异积累有很强的影响,而性别没有明显的影响。有趣的是,中线 1(Mid1)被鉴定为与这种差异相关的候选基因,根据遗传背景表现出明显的上调/下调。用 siRNA 沉默 Mid1 可诱导稳定表达 P301L 突变的人 tau 的 HEK293T 细胞中 tau 的病理性磷酸化,表明 Mid1 在 tau 的病理性改变中起作用。阐明潜在机制将为 tau 病理学的积累提供新的见解,并有望为研究人员提供特别有价值的信息,以继续开发 tau 病的治疗干预措施。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1487/8100160/689d95afdacc/41598_2021_89142_Fig1_HTML.jpg

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