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宿主 Tau 基因型特异性设计和调节 Tau 种子形成和传播,并在海马内注射相同的 Tau AD 接种物后宿主 Tau 转化。

Host Tau Genotype Specifically Designs and Regulates Tau Seeding and Spreading and Host Tau Transformation Following Intrahippocampal Injection of Identical Tau AD Inoculum.

机构信息

Neuropathology Group, Institute of Biomedical Research, IDIBELL, L'Hospitalet de Llobregat, 08907 Barcelona, Spain.

CIBERNED (Network Centre of Biomedical Research of Neurodegenerative Diseases), Institute of Health Carlos III, L'Hospitalet de Llobregat, 08907 Barcelona, Spain.

出版信息

Int J Mol Sci. 2022 Jan 10;23(2):718. doi: 10.3390/ijms23020718.

Abstract

Several studies have demonstrated the different characteristics of tau seeding and spreading following intracerebral inoculation in murine models of tau-enriched fractions of brain homogenates from AD and other tauopathies. The present study is centered on the importance of host tau in tau seeding and the molecular changes associated with the transformation of host tau into abnormal tau. The brains of three adult murine genotypes expressing different forms of tau-WT (murine 4Rtau), hTau (homozygous transgenic mice knock-out for murine tau protein and heterozygous expressing human forms of 3Rtau and 4Rtau proteins), and mtWT (homozygous transgenic mice knock-out for murine tau protein)-were analyzed following unilateral hippocampal inoculation of sarkosyl-insoluble tau fractions from the same AD and control cases. The present study reveals that (a) host tau is mandatory for tau seeding and spreading following tau inoculation from sarkosyl-insoluble fractions obtained from AD brains; (b) tau seeding does not occur following intracerebral inoculation of sarkosyl-insoluble fractions from controls; (c) tau seeding and spreading are characterized by variable genotype-dependent tau phosphorylation and tau nitration, MAP2 phosphorylation, and variable activation of kinases that co-localize with abnormal tau deposits; (d) transformation of host tau into abnormal tau is an active process associated with the activation of specific kinases; (e) tau seeding is accompanied by modifications in tau splicing, resulting in the expression of new 3Rtau and 4Rtau isoforms, thus indicating that inoculated tau seeds have the capacity to model exon 10 splicing of the host or with a genotype-dependent pattern; (e) selective regional and cellular vulnerabilities, and different molecular compositions of the deposits, are dependent on the host tau of mice injected with identical AD tau inocula.

摘要

几项研究已经证明,在富含淀粉样蛋白的脑匀浆tau 片段的脑内接种的小鼠模型中,tau 的种子和传播具有不同的特征。本研究集中于宿主 tau 在 tau 种子形成中的重要性,以及与宿主 tau 转化为异常 tau 相关的分子变化。分析了三种成年小鼠基因型的大脑,这些基因型表达不同形式的 tau-WT(小鼠 4Rtau)、hTau(杂合转基因小鼠敲除了小鼠 tau 蛋白并表达人类形式的 3Rtau 和 4Rtau 蛋白)和 mtWT(杂合转基因小鼠敲除了小鼠 tau 蛋白),在单侧海马接种来自相同 AD 和对照病例的 Sarkosyl 不溶性 tau 片段后。本研究揭示了:(a)宿主 tau 是 tau 接种后从 Sarkosyl 不溶性 AD 脑片段中tau 种子形成和传播所必需的;(b)tau 种子形成不会在 Sarkosyl 不溶性对照脑片段的脑内接种后发生;(c)tau 种子形成和传播的特征是依赖于基因型的可变 tau 磷酸化和 tau 硝化、MAP2 磷酸化,以及与异常 tau 沉积物共定位的激酶的可变激活;(d)宿主 tau 向异常 tau 的转化是一个与特定激酶激活相关的主动过程;(e)tau 种子形成伴随着 tau 剪接的修饰,导致新的 3Rtau 和 4Rtau 同工型的表达,从而表明接种的 tau 种子具有模型宿主 tau 或 外显子 10 剪接的能力,具有基因型依赖性模式;(e)选择性的区域和细胞易感性,以及沉积物的不同分子组成,取决于注射相同 AD tau 接种物的小鼠的宿主 tau。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c48b/8775896/b4568974882c/ijms-23-00718-g001.jpg

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