Loss of chondroitin 6-O-sulfotransferase-1 function results in severe human chondrodysplasia with progressive spinal involvement

被引:137
作者
Thiele, H
Sakano, M
Kitagawa, H
Sugahara, K
Rajab, A
Höhne, W
Ritter, H
Leschik, G
Nürnberg, P
Mundlos, S [1 ]
机构
[1] Humboldt Univ, Charite, Univ Hosp, Inst Med Genet, D-13353 Berlin, Germany
[2] Humboldt Univ, Charite, Univ Hosp, Inst Biochem, D-13353 Berlin, Germany
[3] Max Delbruck Ctr Mol Med, Gene Mapping Ctr, D-13092 Berlin, Germany
[4] Kobe Pharmaceut Univ, Dept Biochem, Kobe, Hyogo 65885580, Japan
[5] Max Planck Inst Mol Genet, D-14195 Berlin, Germany
关键词
D O I
10.1073/pnas.0400334101
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
We studied two large consanguineous families from Oman with a distinct form of spondyloepiphyseal dysplasia (SED Omani type). By using a genome-wide linkage approach, we were able to map the underlying gene to a 4.5-centimorgan interval on chromosome 10q23. We sequenced candidate genes from the region and identified a missense mutation in the chondroitin 6-O-sulfotransferase (C6ST-1) gene (CHST3) changing an arginine into a glutamine (R304Q) in the well conserved T-phosphoadenosine 5'-phosphosulfate binding site. C65T-1 catalyzes the modifying step of chondroitin sulfate (CS) synthesis by transferring sulfate to the C-6 position of the N-acetylgalactosamine of chondroitin. From the crystal structures of other sulfotransferases, it could be inferred that Arg-304 is essential for the structure of the cosubstrate binding site. We used recombinant C6ST-1 to show that the identified missense mutation completely abolishes C6ST-1 activity. Disaccharide composition analysis of CS chains by anion-exchange HPLC shows that both DeltaHexA-GalNAc(6S) and DeltaHexA(2S)-GalNAc(6S) were significantly reduced in the patient's cells and that DeltaHexA-GalNAc(4S,6S), undetectable in controls, was elevated. Analysis of the patient's urine shows marked undersulfation of CS, in particular reduction in 6-O-sulfated disaccharide and an increase in the nonsulfated unit. Our results indicate that the mutation in CHST3 described here causes a specific but generalized defect of CS chain sulfation resulting in chondrodysplasia with major involvement of the spine.
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页码:10155 / 10160
页数:6
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