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亲环蛋白D(CypD)缺失可预防由caspase-3切割的tau蛋白诱导的神经退行性变和认知损伤。

Cyclophilin D (CypD) ablation prevents neurodegeneration and cognitive damage induced by caspase-3 cleaved tau.

作者信息

Olesen Margrethe A, Villavicencio-Tejo Francisca, Johnson Gail V W, Porter George A, Quintanilla Rodrigo A

机构信息

Laboratory of Neurodegenerative Diseases, Instituto de Ciencias Biomédicas, Facultad de Ciencias de La Salud, Universidad Autónoma de Chile, Santiago, Chile.

Department of Anesthesiology and Perioperative Medicine, University of Rochester Medical Center, New York, USA.

出版信息

Free Radic Biol Med. 2025 May;232:128-141. doi: 10.1016/j.freeradbiomed.2025.02.035. Epub 2025 Feb 27.

Abstract

Abnormal tau modifications are one of the main contributors to neurodegenerative processes present during Alzheimer's disease (AD). In this context, truncated tau by caspase-3, a pathological tau form, affects mitochondrial function and antioxidant regulation, contributing to synaptic and cognitive impairment in AD mouse models. We previously showed that the presence of caspase-3 cleaved tau promotes mitochondrial impairment in neuronal cells, where Cyclophilin-D (CypD) protein could be a crucial element. CypD is considered the master regulator of mitochondrial permeability transition pore (mPTP) opening, and its ablation prevents neurodegenerative and cognitive damage induced by β-amyloid in mouse models of AD. However, the possible role of CypD in the neurodegenerative processes mediated by caspase-3-cleaved tau has not been explored. Here, we use tau (-/-) and CypD (-/-) knock-out mice that were subjected to right-side hippocampal stereotaxic injection to induce GFP (AAV-Syn-GFP), full-length (AAV-Syn-GFP-T4) or caspase-3-cleaved (AAV-Syn-GFP-T4C3) tau expression. Then, cognitive performance, synaptic architecture, and hippocampal mitochondrial function were evaluated two months later. We observed that caspase-3 cleaved tau expression inducing cognitive decline, vesicle and synaptic protein deregulation, and mitochondrial impairment generated by the mPTP opening. More interestingly, when caspase-3 cleaved tau was expressed in the hippocampus of CypD (-/-) mice, cognitive decline, synaptic impairment, and mitochondrial damage mediated by mPTP were prevented, demonstrating a novel role of CypD in neurodegenerative changes induced by truncated tau in AD.

摘要

异常的tau蛋白修饰是阿尔茨海默病(AD)期间出现的神经退行性过程的主要促成因素之一。在这种情况下,由caspase-3切割产生的截短型tau蛋白(一种病理性tau蛋白形式)会影响线粒体功能和抗氧化调节,导致AD小鼠模型中的突触和认知障碍。我们之前表明,caspase-3切割的tau蛋白的存在会促进神经元细胞中的线粒体损伤,其中亲环蛋白D(CypD)蛋白可能是一个关键因素。CypD被认为是线粒体通透性转换孔(mPTP)开放的主要调节因子,其缺失可预防AD小鼠模型中由β-淀粉样蛋白诱导的神经退行性和认知损伤。然而,CypD在由caspase-3切割的tau蛋白介导的神经退行性过程中的可能作用尚未得到探索。在这里,我们使用tau(-/-)和CypD(-/-)基因敲除小鼠,对其进行右侧海马立体定位注射,以诱导绿色荧光蛋白(AAV-Syn-GFP)、全长(AAV-Syn-GFP-T4)或caspase-3切割(AAV-Syn-GFP-T4C3)的tau蛋白表达。然后,在两个月后评估认知能力、突触结构和海马线粒体功能。我们观察到,caspase-3切割的tau蛋白表达会导致认知能力下降、囊泡和突触蛋白失调,以及由mPTP开放引起的线粒体损伤。更有趣的是,当在CypD(-/-)小鼠的海马中表达caspase-3切割的tau蛋白时,由mPTP介导的认知能力下降、突触损伤和线粒体损伤得到了预防,这证明了CypD在AD中截短型tau蛋白诱导的神经退行性变化中的新作用。

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