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磷酸多萜醇甘露糖合成酶-1缺乏会导致Ie型先天性糖基化障碍。

Deficiency of dolichol-phosphate-mannose synthase-1 causes congenital disorder of glycosylation type Ie.

作者信息

Imbach T, Schenk B, Schollen E, Burda P, Stutz A, Grunewald S, Bailie N M, King M D, Jaeken J, Matthijs G, Berger E G, Aebi M, Hennet T

机构信息

Institute of Physiology, University of Zurich, 8057 Zurich, Switzerland.

出版信息

J Clin Invest. 2000 Jan;105(2):233-9. doi: 10.1172/JCI8691.

Abstract

Congenital disorders of glycosylation (CDG), formerly known as carbohydrate-deficient glycoprotein syndromes, lead to diseases with variable clinical pictures. We report the delineation of a novel type of CDG identified in 2 children presenting with severe developmental delay, seizures, and dysmorphic features. We detected hypoglycosylation on serum transferrin and cerebrospinal fluid beta-trace protein. Lipid-linked oligosaccharides in the endoplasmic reticulum of patient fibroblasts showed an accumulation of the dolichyl pyrophosphate Man(5)GlcNAc(2) structure, compatible with the reduced dolichol-phosphate-mannose synthase (DolP-Man synthase) activity detected in these patients. Accordingly, 2 mutant alleles of the DolP-Man synthase DPM1 gene, 1 with a 274C>G transversion, the other with a 628delC deletion, were detected in both siblings. Complementation analysis using DPM1-null murine Thy1-deficient cells confirmed the detrimental effect of both mutations on the enzymatic activity. Furthermore, mannose supplementation failed to improve the glycosylation status of DPM1-deficient fibroblast cells, thus precluding a possible therapeutic application of mannose in the patients. Because DPM1 deficiency, like other subtypes of CDG-I, impairs the assembly of N-glycans, this novel glycosylation defect was named CDG-Ie.

摘要

先天性糖基化障碍(CDG),以前称为碳水化合物缺乏糖蛋白综合征,可导致临床表现各异的疾病。我们报告了在2名患有严重发育迟缓、癫痫和畸形特征的儿童中发现的一种新型CDG。我们在血清转铁蛋白和脑脊液β-微量蛋白上检测到低聚糖基化。患者成纤维细胞内质网中的脂联寡糖显示出焦磷酸多萜醇 Man(5)GlcNAc(2) 结构的积累,这与在这些患者中检测到的多萜醇磷酸甘露糖合酶(DolP-Man合酶)活性降低一致。因此,在这两名兄弟姐妹中均检测到DolP-Man合酶DPM1基因的2个突变等位基因,一个发生274C>G颠换,另一个发生628delC缺失。使用DPM1基因敲除的小鼠Thy1缺陷细胞进行的互补分析证实了这两种突变对酶活性的有害影响。此外,补充甘露糖未能改善DPM1缺陷成纤维细胞的糖基化状态,因此排除了甘露糖在这些患者中可能的治疗应用。由于DPM1缺乏症与其他CDG-I亚型一样,会损害N-聚糖的组装,这种新型糖基化缺陷被命名为CDG-Ie。

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