白质营养不良
鞘脂
髓鞘
芬戈莫德
细胞生物学
痉挛
生物
内质网
斑马鱼
神经酰胺
神经科学
遗传学
多发性硬化
医学
内科学
免疫学
基因
物理医学与康复
中枢神经系统
疾病
细胞凋亡
作者
Devesh C. Pant,Imen Dorboz,Agatha Schlüter,Stéphane Fourcade,Nathalie Launay,Javier Joya,Sergio Aguilera,María Eugenia Yoldi,Carlos Casasnovas,Mary Willis,Montserrat Ruíz,Dorothée Ville,Gaëtan Lesca,Karine Siquier-Pernet,Isabelle Desguerre,Huifang Yan,Jingmin Wang,Margit Burmeister,Lauren Brady,Mark A. Tarnopolsky
摘要
Sphingolipid imbalance is the culprit in a variety of neurological diseases, some affecting the myelin sheath. We have used whole-exome sequencing in patients with undetermined leukoencephalopathies to uncover the endoplasmic reticulum lipid desaturase DEGS1 as the causative gene in 19 patients from 13 unrelated families. Shared features among the cases include severe motor arrest, early nystagmus, dystonia, spasticity, and profound failure to thrive. MRI showed hypomyelination, thinning of the corpus callosum, and progressive thalamic and cerebellar atrophy, suggesting a critical role of DEGS1 in myelin development and maintenance. This enzyme converts dihydroceramide (DhCer) into ceramide (Cer) in the final step of the de novo biosynthesis pathway. We detected a marked increase of the substrate DhCer and DhCer/Cer ratios in patients' fibroblasts and muscle. Further, we used a knockdown approach for disease modeling in Danio rerio, followed by a preclinical test with the first-line treatment for multiple sclerosis, fingolimod (FTY720, Gilenya). The enzymatic inhibition of Cer synthase by fingolimod, 1 step prior to DEGS1 in the pathway, reduced the critical DhCer/Cer imbalance and the severe locomotor disability, increasing the number of myelinating oligodendrocytes in a zebrafish model. These proof-of-concept results pave the way to clinical translation.
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