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与年龄相关的p53小泛素样修饰蛋白化加速阿尔茨海默病中的衰老和tau病理变化。

Age-related p53 SUMOylation accelerates senescence and tau pathology in Alzheimer's disease.

作者信息

Wan Lu, Yang Fumin, Yin Anqi, Luo Yong, Liu Yi, Liu Fei, Wang Jian-Zhi, Liu Rong, Wang Xiaochuan

机构信息

Department of Pathophysiology, School of Basic Medicine, Key Laboratory of Education Ministry/Hubei Province of China for Neurological Disorders, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, China.

Co-innovation Center of Neuroregeneration, Nantong University, Nantong, JS, China.

出版信息

Cell Death Differ. 2025 May;32(5):837-854. doi: 10.1038/s41418-025-01448-0. Epub 2025 Jan 28.

Abstract

Aging is a major risk factor for Alzheimer's disease (AD). With the prevalence of AD increased, a mechanistic linkage between aging and the pathogenesis of AD needs to be further addressed. Here, we report that a small ubiquitin-related modifier (SUMO) modification of p53 is implicated in the process which remarkably increased in AD patient's brain. Mechanistically, SUMOylation of p53 at K386 residue causes the dissociation of SET/p53 complex, thus releasing SET into the cytoplasm, SET further interacts with cytoplasmic PP2A and inhibits its activity, resulting in tau hyperphosphorylation in neurons. In addition, SUMOylation of p53 promotes the p53 Ser15 phosphorylation that mediates neuronal senescence. Notably, p53 SUMOylation contributes to synaptic damage and cognitive defects in AD model mice. We also demonstrate that the SUMOylation inhibiter, Ginkgolic acid, recovering several senescent phenotypes drove by p53 SUMOylation in primary neurons. These findings suggest a previously undiscovered etiopathogenic relationship between aging and AD that is linked to p53 SUMOylation and the potential of SUMOylated p53-based therapeutics for neurodegeneration such as Alzheimer's disease.

摘要

衰老为阿尔茨海默病(AD)的主要风险因素。随着AD患病率上升,衰老与AD发病机制之间的机制联系有待进一步探讨。在此,我们报告称,p53的小泛素相关修饰物(SUMO)修饰参与了这一过程,该过程在AD患者大脑中显著增加。从机制上来说,p53在K386残基处的SUMO化导致SET/p53复合物解离,从而使SET释放到细胞质中,SET进一步与细胞质中的蛋白磷酸酶2A(PP2A)相互作用并抑制其活性,导致神经元中tau蛋白过度磷酸化。此外,p53的SUMO化促进了介导神经元衰老的p53丝氨酸15位点的磷酸化。值得注意的是,p53的SUMO化导致AD模型小鼠出现突触损伤和认知缺陷。我们还证明,SUMO化抑制剂银杏酸可恢复原代神经元中由p53 SUMO化驱动的几种衰老表型。这些发现揭示了衰老与AD之间一种此前未被发现的病因关系,该关系与p53 SUMO化有关,以及基于SUMO化p53的疗法对诸如阿尔茨海默病等神经退行性疾病的治疗潜力。

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本文引用的文献

1
The multifactorial nature of healthy brain ageing: Brain changes, functional decline and protective factors.
Ageing Res Rev. 2023 Jul;88:101939. doi: 10.1016/j.arr.2023.101939. Epub 2023 Apr 27.
3
Electrophysiological resting state brain network and episodic memory in healthy aging adults.
Neuroimage. 2022 Jun;253:118926. doi: 10.1016/j.neuroimage.2022.118926. Epub 2022 Jan 20.
4
Neuropathology of Alzheimer's Disease.
Neurotherapeutics. 2022 Jan;19(1):173-185. doi: 10.1007/s13311-021-01146-y. Epub 2021 Nov 2.
5
Effects of aerobic exercise on hippocampal SUMOylation in APP/PS1 transgenic mice.
Neurosci Lett. 2022 Jan 10;767:136303. doi: 10.1016/j.neulet.2021.136303. Epub 2021 Oct 22.
6
Alzheimer's Disease: A Molecular View of β-Amyloid Induced Morbific Events.
Biomedicines. 2021 Sep 1;9(9):1126. doi: 10.3390/biomedicines9091126.
8
Synaptic basis of Alzheimer's disease: Focus on synaptic amyloid beta, P-tau and mitochondria.
Ageing Res Rev. 2021 Jan;65:101208. doi: 10.1016/j.arr.2020.101208. Epub 2020 Nov 4.
9
The SUMO-specific protease SENP1 deSUMOylates p53 and regulates its activity.
J Cell Biochem. 2021 Feb;122(2):189-197. doi: 10.1002/jcb.29838. Epub 2020 Aug 12.
10
Synergy between amyloid-β and tau in Alzheimer's disease.
Nat Neurosci. 2020 Oct;23(10):1183-1193. doi: 10.1038/s41593-020-0687-6. Epub 2020 Aug 10.

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