Department of Medical Laboratory, Affiliated Hospital of Jiujiang University, Jiujiang, 332000, China.
Jiujiang Clinical Precision Medicine Research Center, Jiujiang, 332000, China.
Mol Psychiatry. 2023 Jun;28(6):2215-2227. doi: 10.1038/s41380-023-02024-z. Epub 2023 Mar 14.
Neuronal death is one of the most common pathological hallmarks of diverse neurological diseases, which manifest varying degrees of cognitive or motor dysfunction. Neuronal death can be classified into multiple forms with complicated and unique regulatory signaling pathways. Tau is a key microtubule-associated protein that is predominantly expressed in neurons to stabilize microtubules under physiological conditions. In contrast, pathological tau always detaches from microtubules and is implicated in a series of neurological disorders that are characterized by irreversible neuronal death, such as necrosis, apoptosis, necroptosis, pyroptosis, ferroptosis, autophagy-dependent neuronal death and phagocytosis by microglia. However, recent studies have also revealed that pathological tau can facilitate neuron escape from acute apoptosis, delay necroptosis through its action on granulovacuolar degeneration bodies (GVBs), and facilitate iron export from neurons to block ferroptosis. In this review, we briefly describe the current understanding of how pathological tau exerts dual effects on neuronal death by acting as a double-edged sword in different neurological diseases. We propose that elucidating the mechanism by which pathological tau affects neuronal death is critical for exploring novel and precise therapeutic strategies for neurological disorders.
神经元死亡是多种神经疾病的最常见病理特征之一,这些疾病表现出不同程度的认知或运动功能障碍。神经元死亡可以分为多种形式,具有复杂而独特的调节信号通路。Tau 是一种主要在神经元中表达的微管相关蛋白,在生理条件下稳定微管。相反,病理性 Tau 总是从微管上脱离,并涉及一系列以不可逆神经元死亡为特征的神经紊乱,如坏死、凋亡、坏死性凋亡、细胞焦亡、铁死亡、自噬依赖性神经元死亡和小胶质细胞吞噬。然而,最近的研究还表明,病理性 Tau 可以通过其对颗粒空泡变性体(GVBs)的作用来促进神经元逃避急性凋亡,延迟坏死性凋亡,并促进铁从神经元中输出以阻止铁死亡。在这篇综述中,我们简要描述了目前对病理性 Tau 如何通过在不同神经疾病中充当双刃剑对神经元死亡产生双重影响的理解。我们提出,阐明病理性 Tau 影响神经元死亡的机制对于探索神经紊乱的新型和精确治疗策略至关重要。