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Tau 在球形神经胶质朊病毒病中表现出独特的成核特性。

Tau exhibits unique seeding properties in globular glial tauopathy.

机构信息

Department of Neuroscience, Mayo Clinic, 4500 San Pablo Road, Jacksonville, FL, 32224, USA.

Neuroscience Graduate Program, Mayo Clinic Graduate School of Biomedical Sciences, Jacksonville, FL, 32224, USA.

出版信息

Acta Neuropathol Commun. 2019 Mar 7;7(1):36. doi: 10.1186/s40478-019-0691-9.

Abstract

Tauopathies are neurodegenerative disorders characterized by aggregation of microtubule associated tau protein in neurons and glia. They are clinically and pathologically heterogeneous depending on the isoform of tau protein that accumulates (three or four 31-to-32-amino-acid repeats [3R or 4R] in the microtubule binding domain), as well as the cellular and neuroanatomical distribution of tau pathology. Growing evidence suggests that distinct tau conformers may contribute to the characteristic features of various tauopathies. Globular glial tauopathy (GGT) is a rare 4R tauopathy with globular cytoplasmic inclusions within neurons and glial cells. Given the unique cellular distribution and morphology of tau pathology in GGT, we sought to determine if tau species in GGT had distinctive biological properties. To address this question, we performed seeding analyses with postmortem brain tissues using a commercial tau biosensor cell line. We found that brain lysates from GGT cases had significantly higher seeding competency than other tauopathies, including corticobasal degeneration (CBD), progressive supranuclear palsy (PSP), and Alzheimer's disease (AD). The robust seeding activity of GGT brain lysates was independent of phosphorylated tau burden and diminished upon removal of tau from samples, suggesting that seeding properties were indeed mediated by tau in the lysates. In addition, cellular inclusions in the tau biosensor cell line induced by GGT had a distinct, globular morphology that was markedly different from inclusions induced by other tauopathies, further highlighting the unique nature of tau species in GGT. Characterization of different tau species in GGT showed that detergent-insoluble, fibril-like tau contained the highest seeding activity, as reflected in its ability to increase tau aggregation in primary glial cultures. Taken together, our data suggest that unique seeding properties differentiate GGT-tau from other tauopathies, which provides new insight into pathogenic heterogeneity of primary neurodegenerative tauopathies.

摘要

神经tau 病是一种神经退行性疾病,其特征是神经元和神经胶质中微管相关 tau 蛋白的聚集。根据蓄积的 tau 蛋白异构体(微管结合域中的 3 个或 4 个 31-32 个氨基酸重复[3R 或 4R])以及 tau 病理学的细胞和神经解剖分布,这些疾病在临床上和病理学上存在异质性。越来越多的证据表明,不同的 tau 构象可能有助于各种 tau 病的特征。球型神经胶质 tau 病(GGT)是一种罕见的 4R tau 病,其神经元和神经胶质细胞内有球形细胞质包涵体。鉴于 GGT 中 tau 病理学的独特细胞分布和形态,我们试图确定 GGT 中的 tau 种是否具有独特的生物学特性。为了解决这个问题,我们使用商业 tau 生物传感器细胞系对死后脑组织进行了接种分析。我们发现,与其他 tau 病(包括皮质基底节变性(CBD)、进行性核上性麻痹(PSP)和阿尔茨海默病(AD))相比,GGT 病例的脑裂解物具有显著更高的接种能力。GGT 脑裂解物的强大接种活性与磷酸化 tau 负担无关,并且在从样品中去除 tau 后减少,这表明接种特性确实是由裂解物中的 tau 介导的。此外,由 GGT 诱导的 tau 生物传感器细胞系中的细胞包涵体具有独特的、球形的形态,与其他 tau 病诱导的包涵体明显不同,进一步突出了 GGT 中 tau 种的独特性质。对 GGT 中不同 tau 种的特征描述表明,去污剂不溶性、纤维样 tau 含有最高的接种活性,这反映在其增加原代神经胶质培养物中 tau 聚集的能力。总之,我们的数据表明,独特的接种特性将 GGT-tau 与其他 tau 病区分开来,这为原发性神经退行性 tau 病的发病异质性提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b586/6404306/2e805a7d1bb1/40478_2019_691_Fig1_HTML.jpg

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