硫氧还蛋白-1在阿尔茨海默病模型中通过抑制NLRP1介导的神经元猝死保护神经元

IF 4.3 2区 医学 Q1 NEUROSCIENCES Molecular Neurobiology Pub Date : 2024-11-01 Epub Date: 2024-07-08 DOI:10.1007/s12035-024-04341-y
Jinjing Jia, Hongjun Liu, Liyan Sun, Yunfeng Xu, Xiansi Zeng
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引用次数: 0

摘要

阿尔茨海默病(AD)是全世界最常见的神经退行性疾病。近十年来,越来越多的证据表明,神经炎症与阿尔茨海默病的发病机制密切相关,而NOD样受体家族含吡啶结构域的1(NLRP1)炎性体的激活可诱导神经元的脓毒症,进而导致阿尔茨海默病神经元的丧失。硫氧还蛋白-1(Trx-1)是一种多功能分子,在人体组织中具有抗炎作用,在AD中具有重要的神经保护作用。我们之前的研究初步发现,抑制Trx-1可增强Aβ25-35处理的PC12细胞中NLRP1、caspase-1和gasdermin D(GSDMD)的表达。然而,Trx-1是否能抑制AD神经元中NLRP1介导的神经元热凋亡,目前还不得而知。本研究证实,在 Aβ25-35 处理的小鼠 HT22 和原发性海马神经元中,NLRP1、caspase-1 和 GSDMD 的蛋白水平显著升高。用Trx-1的选择性抑制剂PX-12抑制Trx-1或敲除Trx-1会进一步激活NLRP1介导的神经元热解。相反,在已分化的 PC12 细胞中,慢病毒感染介导的 Trx-1 过表达能显著逆转 NLRP1、caspase-1 和 GSDMD 的表达。此外,在APP/PS1小鼠的海马组织中,腺相关病毒介导的Trx-1过表达同样减轻了NLRP1介导的神经元热解的激活,并减少了Aβ在海马的沉积,改善了APP/PS1小鼠的认知功能。总之,这篇文章提出了一种新的分子机制,即Trx-1在AD模型中通过减轻NLRP1介导的神经元脓毒症发挥神经保护作用,这表明Trx-1可能是一种很有前景的AD治疗靶点。
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Thioredoxin-1 Protects Neurons Through Inhibiting NLRP1-Mediated Neuronal Pyroptosis in Models of Alzheimer's Disease.

Alzheimer's disease (AD) is the most common neurodegenerative disease all over the world. In the last decade, accumulating proofs have evidenced that neuroinflammation is intimately implicated in the pathogenesis of AD and activation of NOD-like receptor family pyrin domain-containing 1 (NLRP1) inflammasome can induce neuronal pyroptosis and in turn lead to neuronal loss in AD. Thioredoxin-1 (Trx-1), a multifunctional molecule with anti-inflammation in human tissues, displays crucial neuroprotective roles in AD. Our previous research preliminarily found that Trx-1 inhibition enhanced the expression of NLRP1, caspase-1, and gasdermin D (GSDMD) in Aβ25-35-treated PC12 cells. However, it is largely unknown if Trx-1 can inhibit NLRP1-mediated neuronal pyroptosis in AD neurons. In this study, it was verified that the protein levels of NLRP1, caspase-1, and GSDMD were significantly increased in Aβ25-35-treated mouse HT22 and primary hippocampal neurons. Suppression of Trx-1 with PX-12, a selective inhibitor of Trx-1, or Trx-1 knockdown further activated NLRP1-mediated neuronal pyroptosis. On the contrary, lentivirus infection-mediated Trx-1 overexpression in differentiated PC12 cells dramatically reversed expression of NLRP1, caspase-1, and GSDMD. Furthermore, Trx-1 overexpression mediated by adeno-associated virus in the hippocampal tissues of APP/PS1 mice likewise attenuated the activation of NLRP1-mediated neuronal pyroptosis, as well as reduced the hippocampal deposition of Aβ and ameliorated the cognitive function of APP/PS1 mice. In conclusion, this article predicates a novel molecular mechanism by which Trx-1 exploits neuroprotection through attenuating NLRP1-mediated neuronal pyroptosis in AD models, suggesting that Trx-1 may be a promising therapeutic target for AD.

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来源期刊
Molecular Neurobiology
Molecular Neurobiology 医学-神经科学
CiteScore
9.00
自引率
2.00%
发文量
480
审稿时长
1 months
期刊介绍: Molecular Neurobiology is an exciting journal for neuroscientists needing to stay in close touch with progress at the forefront of molecular brain research today. It is an especially important periodical for graduate students and "postdocs," specifically designed to synthesize and critically assess research trends for all neuroscientists hoping to stay active at the cutting edge of this dramatically developing area. This journal has proven to be crucial in departmental libraries, serving as essential reading for every committed neuroscientist who is striving to keep abreast of all rapid developments in a forefront field. Most recent significant advances in experimental and clinical neuroscience have been occurring at the molecular level. Until now, there has been no journal devoted to looking closely at this fragmented literature in a critical, coherent fashion. Each submission is thoroughly analyzed by scientists and clinicians internationally renowned for their special competence in the areas treated.
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