EEFSEC缺乏症:伴早发性神经变性的硒病。

IF 8.1 1区 生物学 Q1 GENETICS & HEREDITY
Lucia Laugwitz, Rebecca Buchert, Patricio Olguín, Mehrdad A Estiar, Mihaela Atanasova, Wilson Marques Jr, Jörg Enssle, Brian Marsden, Javiera Avilés, Andrés González-Gutiérrez, Noemi Candia, Marietta Fabiano, Susanne Morlot, Susana Peralta, Alisa Groh, Carmen Schillinger, Carolin Kuehn, Linda Sofan, Marc Sturm, Benjamin Bender, Pedro J Tomaselli, Uta Diebold, Amelie J Mueller, Stephanie Spranger, Maren Fuchs, Fernando Freua, Uirá Souto Melo, Lauren Mattas, Setareh Ashtiani, Oksana Suchowersky, Samuel Groeschel, Guy A Rouleau, Keren Yosovich, Marina Michelson, Zvi Leibovitz, Muhammad Bilal, Eyyup Uctepe, Ahmet Yesilyurt, Orhan Ozdogan, Tamer Celik, Ingeborg Krägeloh-Mann, Olaf Riess, Hendrik Rosewich, Muhammad Umair, Dorit Lev, Stephan Zuchner, Ulrich Schweizer, David S Lynch, Ziv Gan-Or, Tobias B Haack
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引用次数: 0

摘要

硒蛋白表达的先天错误是由编码硒蛋白或硒蛋白生物合成因子的基因的有害变异引起的,其中一些与神经退行性疾病有关。该研究表明,双等位基因硒半胱氨酸trna特异性真核延伸因子(EEFSEC)变异引起硒蛋白缺乏,导致进行性神经退行性变。EEFSEC缺乏症是一种常染色体隐性遗传病,表现为整体发育迟缓、进行性痉挛、共济失调和癫痫发作。脑MRI主要显示小脑病理,包括发育不全和进行性萎缩。外显子组或基因组测序鉴定了来自8个不相关家庭的9个个体的6种不同的双等位基因EEFSEC变体。这些变体在体外显示EEFSEC功能降低,导致成纤维细胞中硒蛋白水平降低。与临床表型一致,eEFSec-RNAi果蝇模型显示出进行性运动功能损伤,这反映在该模型生物的突触缺陷上。本研究确定EEFSEC缺乏是硒代半胱氨酸代谢的先天性错误。它揭示了与硒蛋白代谢相关的神经变性的病理生理机制,提示潜在的靶向治疗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
EEFSEC deficiency: A selenopathy with early-onset neurodegeneration.

Inborn errors of selenoprotein expression arise from deleterious variants in genes encoding selenoproteins or selenoprotein biosynthetic factors, some of which are associated with neurodegenerative disorders. This study shows that bi-allelic selenocysteine tRNA-specific eukaryotic elongation factor (EEFSEC) variants cause selenoprotein deficiency, leading to progressive neurodegeneration. EEFSEC deficiency, an autosomal recessive disorder, manifests with global developmental delay, progressive spasticity, ataxia, and seizures. Cerebral MRI primarily demonstrated a cerebellar pathology, including hypoplasia and progressive atrophy. Exome or genome sequencing identified six different bi-allelic EEFSEC variants in nine individuals from eight unrelated families. These variants showed reduced EEFSEC function in vitro, leading to lower levels of selenoproteins in fibroblasts. In line with the clinical phenotype, an eEFSec-RNAi Drosophila model displays progressive impairment of motor function, which is reflected in the synaptic defects in this model organisms. This study identifies EEFSEC deficiency as an inborn error of selenocysteine metabolism. It reveals the pathophysiological mechanisms of neurodegeneration linked to selenoprotein metabolism, suggesting potential targeted therapies.

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来源期刊
CiteScore
14.70
自引率
4.10%
发文量
185
审稿时长
1 months
期刊介绍: The American Journal of Human Genetics (AJHG) is a monthly journal published by Cell Press, chosen by The American Society of Human Genetics (ASHG) as its premier publication starting from January 2008. AJHG represents Cell Press's first society-owned journal, and both ASHG and Cell Press anticipate significant synergies between AJHG content and that of other Cell Press titles.
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