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核氧化还原蛋白样2基因的代谢信号传导支持脑功能。

The metabolic signaling of the nucleoredoxin-like 2 gene supports brain function.

作者信息

Jaillard Céline, Ouechtati Farah, Clérin Emmanuelle, Millet-Puel Géraldine, Corsi Mariangela, Aït-Ali Najate, Blond Frédéric, Chevy Quentin, Gales Lara, Farinelli Mélissa, Dalkara Deniz, Sahel José-Alain, Portais Jean-Charles, Poncer Jean-Christophe, Léveillard Thierry

机构信息

Sorbonne Université, INSERM, CNRS, Institut de la Vision, F-7501b, Paris, France.

Sorbonne Université, INSERM, CNRS, Institut du Fer à Moulin, F-75005, Paris, France.

出版信息

Redox Biol. 2021 Nov 25;48:102198. doi: 10.1016/j.redox.2021.102198.

Abstract

The nucleoredoxin gene NXNL2 encodes for two products through alternative splicing, rod-derived cone viability factor-2 (RdCVF2) that mediates neuronal survival and the thioredoxin-related protein (RdCVF2L), an enzyme that regulates the phosphorylation of TAU. To investigate the link between NXNL2 and tauopathies, we studied the Nxnl2 knockout mouse (Nxnl2). We established the expression pattern of the Nxnl2 gene in the brain using a Nxnl2 reporter mouse line, and characterized the behavior of the Nxnl2 mouse at 2 months of age. Additionally, long term potentiation and metabolomic from hippocampal specimens were collected at 2 months of age. We studied TAU oligomerization, phosphorylation and aggregation in Nxnl2 brain at 18 months of age. Finally, newborn Nxnl2 mice were treated with adeno-associated viral vectors encoding for RdCVF2, RdCVF2L or both and measured the effect of this therapy on long-term potential, glucose metabolism and late-onset tauopathy. Nxnl2 mice at 2 months of age showed severe behavioral deficiency in fear, pain sensitivity, coordination, learning and memory. The Nxnl2 also showed deficits in long-term potentiation, demonstrating that the Nxnl2 gene is involved in regulating brain functions. Dual delivery of RdCVF2 and RdCVF2L in newborn Nxnl2 mice fully correct long-term potentiation through their synergistic action. The expression pattern of the Nxnl2 gene in the brain shows a predominant expression in circumventricular organs, such as the area postrema. Glucose metabolism of the hippocampus of Nxnl2 mice at 2 months of age was reduced, and was not corrected by gene therapy. At 18-month-old Nxnl2 mice showed brain stigmas of tauopathy, such as oligomerization, phosphorylation and aggregation of TAU. This late-onset tauopathy can be prevented, albeit with modest efficacy, by recombinant AAVs administrated to newborn mice. The Nxnl2 mice have memory dysfunction at 2-months that resembles mild-cognitive impairment and at 18-months exhibit tauopathy, resembling to the progression of Alzheimer's disease. We propose the Nxnl2 mouse is a model to study multistage aged related neurodegenerative diseases. The NXNL2 metabolic and redox signaling is a new area of therapeutic research in neurodegenerative diseases.

摘要

核氧化还原蛋白基因NXNL2通过可变剪接编码两种产物,即介导神经元存活的视杆细胞衍生锥体细胞存活因子-2(RdCVF2)和一种调节TAU磷酸化的硫氧还蛋白相关蛋白(RdCVF2L)。为了研究NXNL2与tau蛋白病之间的联系,我们研究了Nxnl2基因敲除小鼠(Nxnl2)。我们使用Nxnl2报告基因小鼠品系确定了Nxnl2基因在大脑中的表达模式,并对2月龄Nxnl2小鼠的行为进行了表征。此外,在2月龄时收集海马标本的长时程增强和代谢组学数据。我们研究了18月龄Nxnl2小鼠大脑中TAU的寡聚化、磷酸化和聚集情况。最后,用编码RdCVF2、RdCVF2L或两者的腺相关病毒载体处理新生Nxnl2小鼠,并测量这种治疗对长时程电位、葡萄糖代谢和迟发性tau蛋白病的影响。2月龄的Nxnl2小鼠在恐惧、疼痛敏感性、协调性、学习和记忆方面表现出严重的行为缺陷。Nxnl2小鼠在长时程增强方面也存在缺陷,表明Nxnl2基因参与调节脑功能。在新生Nxnl2小鼠中双重递送RdCVF2和RdCVF2L可通过它们的协同作用完全纠正长时程增强。Nxnl2基因在大脑中的表达模式显示在室周器官如最后区中占主导地位。2月龄Nxnl2小鼠海马的葡萄糖代谢降低,并且基因治疗无法纠正。18月龄的Nxnl2小鼠表现出tau蛋白病的脑病变特征,如TAU的寡聚化、磷酸化和聚集。通过给新生小鼠注射重组腺相关病毒可以预防这种迟发性tau蛋白病,尽管效果一般。Nxnl2小鼠在2月龄时存在类似于轻度认知障碍的记忆功能障碍,在18月龄时表现出tau蛋白病,类似于阿尔茨海默病的进展。我们提出Nxnl2小鼠是研究多阶段年龄相关神经退行性疾病的模型。NXNL2的代谢和氧化还原信号是神经退行性疾病治疗研究的一个新领域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/78ea/8640531/15a990f5d859/gr1.jpg

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