RRC ID 39885
Author Okuda T, Mita S, Yamauchi S, Fukuta M, Nakano H, Sawada T, Habuchi O.
Title Molecular cloning and characterization of GalNAc 4-sulfotransferase expressed in human pituitary gland.
Journal J Biol Chem
Abstract We have previously cloned chondroitin-4-sulfotransferase (C4ST) cDNA from mouse brain. In this paper, we report cloning and characterization of GalNAc 4-sulfotransferase (GalNAc4ST), which transfers sulfate to position 4 of the nonreducing terminal GalNAc residue. The obtained cDNA contains a single open reading frame that predicts a type II transmembrane protein composed of 424 amino acid residues. Identity of the amino acid sequence between GalNAc4ST and human C4ST was 30%. When the cDNA was transfected in COS-7 cells, sulfotransferase activity toward carbonic anhydrase VI was overexpressed but no sulfotransferase activity toward chondroitin or desulfated dermatan sulfate was increased over the control. Sulfation of carbonic anhydrase VI by the recombinant GalNAc4ST occurred at position 4 of the GalNAc residue of N-linked oligosaccharides. The recombinant GalNAc4ST transferred sulfate to position 4 of GalNAc residue of p-nitrophenyl GalNAc, indicating that this sulfotransferase transfers sulfate to position 4 at the nonreducing terminal GalNAc residue. Dot blot analysis showed that the message of GalNAc4ST was expressed strongly in the human pituitary, suggesting that the cloned GalNAc4ST may be involved in the synthesis of the nonreducing terminal GalNAc 4-sulfate residues found in the N-linked oligosaccharides of pituitary glycoprotein hormones.
Volume 275(51)
Pages 40605-13
Published 2000-12-22
DOI 10.1074/jbc.M007983200
PII S0021-9258(19)55806-9
PMID 11001942
MeSH Amino Acid Sequence Animals Base Sequence COS Cells Cloning, Molecular DNA, Complementary Humans Molecular Sequence Data Pituitary Gland / enzymology* Sequence Homology, Amino Acid Sulfotransferases / genetics* Sulfotransferases / metabolism
IF 4.238
Times Cited 29
WOS Category BIOCHEMISTRY & MOLECULAR BIOLOGY
Resource
Human and Animal Cells COS-7(RCB0539)