NCS1 overexpression restored mitochondrial activity and behavioral alterations in a zebrafish model of Wolfram syndrome.

Molecular Therapy. Methods & Clinical Development Pub Date : 2022-10-07 eCollection Date: 2022-12-08 DOI:10.1016/j.omtm.2022.10.003
Lucie Crouzier, Elodie M Richard, Camille Diez, Morgane Denus, Amandine Peyrel, Hala Alzaeem, Nicolas Cubedo, Thomas Delaunay, Tangui Maurice, Benjamin Delprat
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引用次数: 4

Abstract

Wolfram syndrome (WS) is a rare neurodegenerative disease resulting in deafness, optic atrophy, diabetes, and neurological disorders. Currently, no treatment is available for patients. The mutated gene, WFS1, encodes an endoplasmic reticulum (ER) protein, Wolframin. We previously reported that Wolframin regulated the ER-mitochondria Ca2+ transfer and mitochondrial activity by protecting NCS1 from degradation in patients' fibroblasts. We relied on a zebrafish model of WS, the wfs1ab KO line, to analyze the functional and behavioral impact of NCS1 overexpression as a novel therapeutic strategy. The wfs1ab KO line showed an increased locomotion in the visual motor and touch-escape responses. The absence of wfs1 did not impair the cellular unfolded protein response, in basal or tunicamycin-induced ER stress conditions. In contrast, metabolic analysis showed an increase in mitochondrial respiration in wfs1ab KO larvae. Interestingly, overexpression of NCS1 using mRNA injection restored the alteration of mitochondrial respiration and hyperlocomotion. Taken together, these data validated the wfs1ab KO zebrafish line as a pertinent experimental model of WS and confirmed the therapeutic potential of NCS1. The wfs1ab KO line therefore appeared as an efficient model to identify novel therapeutic strategies, such as gene or pharmacological therapies targeting NCS1 that will correct or block WS symptoms.

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NCS1过表达恢复了Wolfram综合征斑马鱼模型的线粒体活性和行为改变。
Wolfram综合征(WS)是一种罕见的神经退行性疾病,导致耳聋、视神经萎缩、糖尿病和神经系统疾病。目前,没有治疗方法可用于患者。突变基因WFS1编码内质网(ER)蛋白Wolframin。我们之前报道了Wolframin通过保护患者成纤维细胞中的NCS1免受降解来调节er -线粒体Ca2+转移和线粒体活性。我们依靠斑马鱼WS模型wfs1ab KO系来分析NCS1过表达作为一种新的治疗策略对功能和行为的影响。wfs1ab KO系在视觉运动和触觉逃逸反应中显示出增加的运动。在基础或tunicamycin诱导的内质网应激条件下,wfs1的缺失并未损害细胞的未折叠蛋白反应。相比之下,代谢分析显示wfs1ab KO幼虫线粒体呼吸增加。有趣的是,注射NCS1 mRNA后,过表达NCS1可以恢复线粒体呼吸和运动过度的改变。综上所述,这些数据验证了wfs1ab KO斑马鱼系作为WS的相关实验模型,并证实了NCS1的治疗潜力。因此,wfs1ab KO系似乎是一种有效的模型,可以确定新的治疗策略,例如针对NCS1的基因或药物治疗,可以纠正或阻断WS症状。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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