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Dolichol phosphate mannose synthase (DPM1) mutations define congenital disorder of glycosylation Ie (CDG-Ie)

机译:磷酸二氢磷酸甘露糖合酶(DPM1)突变定义了先天性糖基化Ie(CDG-Ie)疾病

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摘要

Congenital disorders of glycosylation (CDGs) are metabolic deficiencies in glycoprotein biosynthesis that usually cause severe mental and psychomotor retardation. Different forms of CDGs can be recognized by altered isoelectric focusing (IEF) patterns of serum transferrin (Tf). Two patients with these symptoms and similar abnormal Tf IEF patterns were analyzed by metabolic labeling of fibroblasts with [2-3H]mannose. The patients produced a truncated dolichol-linked precursor oligosaccharide with 5 mannose residues, instead of the normal precursor with 9 mannose residues. Addition of 250 μΜ mannose to the culture medium corrected the size of the truncated oligosaccharide. Microsomes from fibroblasts of these patients were approximately 95% deficient in dolichol-phosphate-mannose (Dol-P-Man) synthase activity, with an apparent Km for GDP-Man ∼6-fold higher than normal. DPM1, the gene coding for the catalytic subunit of Dol-P-Man synthase, was altered in both patients. One patient had a point mutation, C274G, causing an R92G change in the coding sequence. The other patient also had the C274G mutation and a 13-bp deletion that presumably resulted in an unstable transcript. Defects in DPM1 define a new glycosylation disorder, CDG-Ie.
机译:先天性糖基化疾病(CDG)是糖蛋白生物合成中的代谢缺陷,通常会导致严重的精神和精神运动发育迟缓。 CDGs的不同形式可以通过改变血清转铁蛋白(Tf)的等电聚焦(IEF)模式来识别。通过[2-3H]甘露糖对成纤维细胞进行代谢标记,分析了具有这些症状和相似的Tf IEF异常模式的两名患者。患者产生了具有5个甘露糖残基的截短的与多醇连接的前体寡糖,而不是具有9个甘露糖残基的正常前体。向培养基中添加250μM甘露糖校正了截短的寡糖的大小。这些患者的成纤维细胞微粒体的多羟磷酸磷酸甘露糖(Dol-P-Man)合酶活性约95%不足,GDP-Man的表观Km比正常高约6倍。 DPM1,编码Dol-P-Man合酶催化亚基的基因,在两名患者中均发生了改变。一名患者的点突变为C274G,导致编码序列发生R92G改变。另一例患者也有C274G突变和13 bp的缺失,可能导致转录本不稳定。 DPM1中的缺陷定义了一种新的糖基化疾病CDG-Ie。

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