A partial deficiency of dehydrodolichol reduction is a cause of carbohydrate-deficient glycoprotein syndrome type I

被引:36
作者
Ohkura, T
Fukushima, K
Kurisaki, A
Sagami, H
Ogura, K
Ohno, K
HaraKuge, S
Yamashita, K
机构
[1] SASAKI INST,DEPT BIOCHEM,CHIYODA KU,TOKYO 101,JAPAN
[2] TOHOKU UNIV,INST CHEM REACT SCI,AOBA KU,SENDAI,MIYAGI 980,JAPAN
[3] TOTTORI UNIV,FAC MED,SCH LIFE SCI,DEPT NEUROBIOL,YONAGO,TOTTORI 683,JAPAN
关键词
D O I
10.1074/jbc.272.11.6868
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Carbohydrate deficient glycoprotein (CDG) syndrome type I is a congenital disorder that involves the underglycosylation of N-glycosylated glycoproteins (Yamashita, K., Ideo, H., Ohkura, T., Fukushima, K., Yuasa, I., Ohno, K., and Takeshita, K. (1993) J. Biol. Chen. 268, 5783-5789). In an effort to further elucidate the biochemical basis of CDG syndrome type I in our patients, we investigated the defect in the multi-step pathway for biosynthesis of lipid-linked oligosaccharides (LLO) by the metabolic labeling method using [H-3]glucosamine , [3H]mannose, and [H-3]mevalonate. The LLO levels in synchronized cultures of fibroblasts from these patients were severalfold lower than those in control fibroblasts in the S phase, and the oligosaccharides released from LLO showed the same structural composition, Glc1 similar to 3 Man(9) GlcNAc GlcNAc, in the case of both the patients and controls. The amount of [H-3]mannose incorporated into mannose 6-phosphate, mannose l-phosphate , and GDP-mannose was greater in fibroblasts from these patients than in the control fibroblasts in the G(1) period, although the ratios of these acidic mannose derivatives as indicated by the relative levels of radioactivity were the same for the two types of fibroblasts. Furthermore, upon metabolic labeling with [H-3]mevalonate, the level of [H-3]dehydrodolichol in fibroblasts from these patients increased in the S phase, and the levels of [H-3]dolichol and [H-3]dolichol-PP oligosaccharides concomitantly decreased, although the chain length distribution of the respective dolichols and dehydrodolichols was the same in the two types of fibroblasts. These results indicate that the conversion of dehydrodolichol to dolichol is partially defective in our patients and that the resulting loss of dolichol leads directly to underglycosylation.
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页码:6868 / 6875
页数:8
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