Inducing aggresome and stable tau aggregation in Neuro2a cells with an optogenetic tool.

IF 1.6 Q4 BIOPHYSICS
Biophysics and physicobiology Pub Date : 2024-10-29 eCollection Date: 2024-01-01 DOI:10.2142/biophysico.bppb-v21.0023
Shigeo Sakuragi, Tomoya Uchida, Naoki Kato, Boxiao Zhao, Toshiki Takahashi, Akito Hattori, Yoshihiro Sakata, Yoshiyuki Soeda, Akihiko Takashima, Hideaki Yoshimura, Gen Matsumoto, Hiroko Bannai
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引用次数: 0

Abstract

Tauopathy is a spectrum of diseases characterized by fibrillary tau aggregate formation in neurons and glial cells in the brain. Tau aggregation originates in the brainstem and entorhinal cortex and then spreads throughout the brain in Alzheimer's disease (AD), which is the most prevalent type of tauopathy. Understanding the mechanism by which locally developed tau pathology propagates throughout the brain is crucial for comprehending AD pathogenesis. Therefore, a novel model of tau pathology that artificially induces tau aggregation in targeted cells at specific times is essential. This study describes a novel optogenetic module, OptoTau, which is a human tau with the P301L mutation fused with a photosensitive protein CRY2olig, inducing various forms of tau according to the temporal pattern of blue light illumination pattern. Continuous blue light illumination for 12 h to Neuro2a cells that stably express OptoTau (OptoTauKI cells) formed clusters along microtubules, many of which eventually accumulated in aggresomes. Conversely, methanol-resistant tau aggregation was formed when alternating light exposure and darkness in 30-min cycles for 8 sets per day were repeated over 8 days. Methanol-resistant tau was induced more rapidly by repeating 5-min illumination followed by 25-min darkness over 24 h. These results indicate that OptoTau induced various tau aggregation stages based on the temporal pattern of blue light exposure. Thus, this technique exhibits potential as a novel approach to developing specific tau aggregation in targeted cells at desired time points.

利用光遗传学工具诱导 Neuro2a 细胞中的侵染体和稳定的 tau 聚集。
tau病是一种以大脑神经元和神经胶质细胞中原纤维tau聚集形成为特征的疾病。Tau聚集起源于脑干和内嗅皮层,然后在阿尔茨海默病(AD)中扩散到整个大脑,这是最常见的Tau病类型。了解局部发展的tau病理在整个大脑中传播的机制对于理解AD的发病机制至关重要。因此,一种新的tau病理模型在特定时间人工诱导tau聚集在靶细胞中是必要的。本研究描述了一种新的光遗传模块OptoTau,它是一种具有P301L突变的人类tau蛋白与光敏蛋白CRY2olig融合,根据蓝光照明模式的时间模式诱导各种形式的tau。连续蓝光照射12小时后,稳定表达OptoTau的Neuro2a细胞(OptoTau细胞)沿微管形成簇状,其中许多最终聚集在聚合体中。相反,当每天重复8组,30分钟交替光照和黑暗,持续8天,形成抗甲醇tau聚集。在24小时内重复5分钟的光照和25分钟的黑暗可以更快地诱导出抗甲醇tau蛋白。这些结果表明,OptoTau蛋白根据蓝光暴露的时间模式诱导出不同的tau蛋白聚集阶段。因此,该技术作为一种在所需时间点在靶细胞中发展特异性tau聚集的新方法,具有潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
2.10
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