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为什么是 Tau?tau 蛋白在不同亚细胞结构域的特异性位点磷酸化的功能重要性。

Wherefore Art Tau? Functional importance of site-specific tau phosphorylation in diverse subcellular domains.

机构信息

Department of Pharmacology and Physiology, Georgetown University Medical Center, Washington, DC 20057, USA.

Department of Pharmacology and Physiology, Georgetown University Medical Center, Washington, DC 20057, USA.

出版信息

Int J Biochem Cell Biol. 2023 Nov;164:106475. doi: 10.1016/j.biocel.2023.106475. Epub 2023 Sep 29.

Abstract

Tau has canonically been considered as an axonal protein, but studies have observed tau localization in other subcellular domains of neurons. This relocated tau has been identified in both physiological and pathological conditions, and it is often labeled mislocalized. Furthermore, these forms of tau are referred to as "hyperphosphorylated" without specifying the phosphosites involved. On the contrary, we speculate that tau may have multiple physiological functions in various locations regulated via specific phosphorylation sites, although this picture is obscured by a lack of comprehensive phosphosite analysis. Here, we examine findings in the literature on the subcellular location of tau and potential roles tau has in those regions. We intentionally focus on the site-specific phosphorylated patterns involved in governing these properties, which are not well elucidated. To facilitate understanding of these events, we have begun establishing a comprehensive map of tau phosphorylation signatures. Such efforts may clarify tau's diverse physiological functions beyond the axon as well as promote development of novel therapeutic strategies directed against distinct tau subpopulations.

摘要

tau 通常被认为是一种轴突蛋白,但研究已经观察到 tau 在神经元的其他亚细胞结构域中的定位。这种重新定位的 tau 已经在生理和病理条件下被识别出来,通常被标记为错误定位。此外,这些形式的 tau 被称为“过度磷酸化”,而没有具体说明涉及的磷酸化位点。相反,我们推测 tau 可能在不同的位置具有多种生理功能,这些功能通过特定的磷酸化位点进行调节,尽管由于缺乏全面的磷酸化位点分析,这一图景变得模糊不清。在这里,我们检查了文献中关于 tau 的亚细胞定位以及 tau 在这些区域中可能具有的潜在作用的发现。我们有意关注在这些特性的调控中涉及的特定磷酸化模式,这些模式还没有得到很好的阐明。为了便于理解这些事件,我们已经开始建立 tau 磷酸化特征的综合图谱。这些努力可能会澄清 tau 在轴突以外的多种生理功能,并促进针对不同 tau 亚群的新型治疗策略的发展。

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