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Bi-allelic Mutations in EPRS, Encoding the Glutamyl-Prolyl-Aminoacyl-tRNA Synthetase, Cause a Hypomyelinating Leukodystrophy.EPRS 基因(编码谷氨酰-脯氨酰-氨酰-tRNA 合成酶)的双等位基因突变导致一种低髓鞘化白质脑病。
Am J Hum Genet. 2018 Apr 5;102(4):676-684. doi: 10.1016/j.ajhg.2018.02.011. Epub 2018 Mar 22.
2
Fingolimod-improved axonal and myelin integrity of white matter tracts associated with multiple sclerosis-related functional impairments.芬戈莫德改善多发性硬化症相关功能障碍与白质束相关的轴突和髓鞘完整性。
CNS Neurosci Ther. 2018 May;24(5):412-419. doi: 10.1111/cns.12796. Epub 2018 Jan 5.
3
Synthesis of Sphingolipids Is Defective in Experimental Models of Huntington's Disease.在亨廷顿舞蹈症实验模型中,鞘脂的合成存在缺陷。
Front Neurosci. 2017 Dec 19;11:698. doi: 10.3389/fnins.2017.00698. eCollection 2017.
4
Adulthood leukodystrophies.成人脑白质营养不良
Nat Rev Neurol. 2018 Feb;14(2):94-105. doi: 10.1038/nrneurol.2017.175. Epub 2018 Jan 5.
5
Sphingolipids and their metabolism in physiology and disease.鞘脂及其代谢在生理和疾病中的作用。
Nat Rev Mol Cell Biol. 2018 Mar;19(3):175-191. doi: 10.1038/nrm.2017.107. Epub 2017 Nov 22.
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Lysosomal storage diseases.溶酶体贮积症
Transl Sci Rare Dis. 2017 May 25;2(1-2):1-71. doi: 10.3233/TRD-160005.
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Oxidative stress and mitochondrial dynamics malfunction are linked in Pelizaeus-Merzbacher disease.氧化应激和线粒体动态功能障碍在 Pelizaeus-Merzbacher 病中相关联。
Brain Pathol. 2018 Sep;28(5):611-630. doi: 10.1111/bpa.12571. Epub 2017 Dec 26.
8
Hematopoietic Stem-Cell Gene Therapy for Cerebral Adrenoleukodystrophy.用于脑型肾上腺脑白质营养不良的造血干细胞基因治疗
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9
Biallelic mutations in the homeodomain of NKX6-2 underlie a severe hypomyelinating leukodystrophy.NKX6-2 同源域的双等位基因突变导致严重的少突胶质细胞白质营养不良。
Brain. 2017 Oct 1;140(10):2550-2556. doi: 10.1093/brain/awx207.
10
Leukodystrophies: a proposed classification system based on pathological changes and pathogenetic mechanisms.脑白质营养不良:一种基于病理变化和发病机制的分类系统提议
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去饱和酶 DEGS1 的缺失导致少突胶质细胞髓鞘形成不良性白质营养不良。

Loss of the sphingolipid desaturase DEGS1 causes hypomyelinating leukodystrophy.

机构信息

Neurometabolic Diseases Laboratory, Bellvitge Biomedical Research Institute (IDIBELL), 08908 L'Hospitalet de Llobregat, Barcelona, Catalonia, Spain.

Center for Biomedical Research on Rare Diseases (CIBERER), ISCIII, Madrid, Spain.

出版信息

J Clin Invest. 2019 Mar 1;129(3):1240-1256. doi: 10.1172/JCI123959. Epub 2019 Feb 11.

DOI:10.1172/JCI123959
PMID:30620337
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6391109/
Abstract

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.

摘要

鞘脂失衡是多种神经疾病的罪魁祸首,其中一些会影响髓鞘。我们曾使用全外显子组测序,在病因不明的脑白质病患者中发现内质网脂质去饱和酶 DEGS1,它是 13 个无关联家系的 19 名患者的致病基因。这些病例有一些共同特征,包括严重的运动阻滞、早发性眼球震颤、肌张力障碍、痉挛和严重的生长发育迟缓。磁共振成像(MRI)显示低髓鞘化、胼胝体变薄和进行性丘脑和小脑萎缩,表明 DEGS1 在髓鞘发育和维持中起着关键作用。该酶在从头生物合成途径的最后一步将二氢神经酰胺(DhCer)转化为神经酰胺(Cer)。我们在患者的成纤维细胞和肌肉中检测到底物 DhCer 和 DhCer/Cer 比值显著增加。此外,我们使用 Danio rerio 的敲低方法进行疾病建模,然后用多发性硬化症的一线治疗药物 fingolimod(FTY720,Gilenya)进行临床前测试。fingolimod 抑制 Cer 合酶,该酶位于途径中 DEGS1 的前一步,可减少关键的 DhCer/Cer 失衡和严重的运动障碍,增加斑马鱼模型中髓鞘形成少突胶质细胞的数量。这些概念验证结果为临床转化铺平了道路。