Title of article :
SRD5A3 Is Required for Converting Polyprenol to Dolichol and Is Mutated in a Congenital Glycosylation Disorder
Author/Authors :
Vincent Cantagrel، نويسنده , , Dirk J. Lefeber، نويسنده , , Bobby G. Ng، نويسنده , , Ziqiang Guan، نويسنده , , Jennifer L. Silhavy، نويسنده , , Stephanie L. Bielas، نويسنده , , Ludwig Lehle، نويسنده , , Hans Hombauer، نويسنده , , Maciej Adamowicz، نويسنده , , Ewa Swiezewska، نويسنده , , Arjan P. De Brouwer، نويسنده , , Peter Blümel، نويسنده , , Jolanta Sykut-Cegielska، نويسنده , , Scott Houliston، نويسنده , , Dominika Swistun، نويسنده , , Bassam R. Ali، نويسنده , , William B. Dobyns، نويسنده , , Dusica Babovic-Vuksanovic، نويسنده , , Hans van Bokhoven، نويسنده , , Ron A. Wevers، نويسنده , , et al.، نويسنده ,
Issue Information :
هفته نامه با شماره پیاپی سال 2010
Pages :
15
From page :
203
To page :
217
Abstract :
N-linked glycosylation is the most frequent modification of secreted and membrane-bound proteins in eukaryotic cells, disruption of which is the basis of the congenital disorders of glycosylation (CDGs). We describe a new type of CDG caused by mutations in the steroid 5α-reductase type 3 (SRD5A3) gene. Patients have mental retardation and ophthalmologic and cerebellar defects. We found that SRD5A3 is necessary for the reduction of the alpha-isoprene unit of polyprenols to form dolichols, required for synthesis of dolichol-linked monosaccharides, and the oligosaccharide precursor used for N-glycosylation. The presence of residual dolichol in cells depleted for this enzyme suggests the existence of an unexpected alternative pathway for dolichol de novo biosynthesis. Our results thus suggest that SRD5A3 is likely to be the long-sought polyprenol reductase and reveal the genetic basis of one of the earliest steps in protein N-linked glycosylation.
Journal title :
CELL
Serial Year :
2010
Journal title :
CELL
Record number :
1020355
Link To Document :
بازگشت