Abstract

The receptor for epidermal growth factor (EGF) in the human epidermoid carcinoma cell line A-431 is a glycoprotein of apparent molecular weight = 170,000. During biosynthesis, the receptor is first detected as a precursor of apparent Mr = 160,000. In this report we describe our studies on the structures of the oligosaccharide moieties of the mature receptor and its precursor. A-431 cells were grown in medium containing radioactive sugars and the radiolabeled receptors were purified by immunoprecipitation and sodium dodecyl sulfate-polyacrylamide gel electrophoresis. Radiolabeled glycopeptides were prepared from the purified receptor by proteolysis, and their structures were examined by a variety of techniques. The mature EGF receptor contains both complex-type and high mannose-type Asn-linked oligosaccharides in the approximate ratio of 2 to 1, while the precursor contains only high mannose-type chains. A number of experimental results demonstrate that the mature receptor does not contain oligosaccharides in O-linkage through N-acetylgalactosamine to either serine or threonine. The high mannose-type oligosaccharides in both precursor and mature receptor can be cleaved by endo-beta-N-acetylglucosaminidase H and occur in the mature receptor as Man9GlcNAc2 (6%), Man8GlcNAc2 (49%), Man7GlcNAc2 (25%), and Man6GlcNAc2 (20%), whereas, in the receptor precursor the high mannose chains occur primarily as Man8GlcNAc2 (70%). The complex-type oligosaccharides in the mature receptor are predominantly tri- or tetraantennary species and are unusual in several respects. (i) Many of the chains do not contain sialic acid, while the remaining chains contain 1-2 sialic acid residues. (ii) Half of the [3H] mannose-derived radioactivity was recovered as [3H] fucose and the remaining half as [3H] mannose, indicating that there may be an average of 3 fucose residues/chain. (iii) About one-third of the [3H] glucosamine-derived radioactivity in these glycopeptides was recovered as N-acetylgalactosamine and these residues are all alpha-linked and occur at the nonreducing termini. These data demonstrate that the complex-type Asn-linked oligosaccharides in the EGF receptor from A-431 cells contain sugar residues related to human blood type A. In light of other recent studies, these results suggest that in A-431 cells blood group determinants in surface glycoproteins are contained in Asn-linked but not O-linked oligosaccharides.

Highlights

  • From the $Department of Biochemistry, University of Georgia,Athens, Georgia30602 and the §Department of Biochemistry ana! IIDiuision of DerrnatoLogy, Vanderbilt University School of Medicine, Nashuille, Tennessee 37232

  • A-431 cells were grown in medium containing radioactive sugars and trhaediolabeled receptorswere purified by immunoprecipitation and sodium dodecyl sulfate-polyacrylamidegelelectrophoresis.Radiola-The surface receptor in human cells for the polypeptide beled glycopeptides were prepared from the purified hormone epidermal growth factor (EGFl) is a glycoprotein of receptor by proteolysis, and their structures were ex- apparent molecular weight = 170,000 [1, 2]

  • In thepresent study we have examined the oligosaccharide moieties in purified EGF receptor from A-431 cells

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Summary

EXPERIMENTAL PROCEDURES

Acid Hydrolysis of Glycopeptides-Glycopeptides were hydrolyzed in 2 N HCl for 4 h a t 100 "C in a final volume of 0.2 ml. The column was washed with 5 ml of water, the eluate containing the acetylated sugars was dried by evaporation under reduced pressure, and thesugars were suspended nosidase, @-N-acetylglucosaminidasea, nd @-galactosidasewere pre- in water and spotted for paper chromatography. [3H]mannose-labeled high mannose-type oligosaccharides were pre- Glycosidase Treatments-Radiolabeled glycopeptides were treated pared as described previously [22]. Glycopeptides were treated with 10 milliunits of E, freundii endo-@-galactosidasein 40 pl of 0.1 M sodium acetate buffer at pH 5.6 containing 1mg/ml bovine serum albumin a t 37 "C for 48 h in a toluene atmosphere. To determine the release of radioactive sugars after exoglycosidase treatment, the treated glycopeptides were analyzed by descending paper chromatography in either solvent B or C, as described previously [26]. In other cases the treatedglycopeptides were analyzed directly by SDS-Polyacrylamide Gel Electrophoresis Slices Containing the Puri- chromatography on QAE-Sephadex

RESULTS
Number Radioactivitv
EGF Receptor Glycosylation
GlycosylatEioGnF Receptor
No treatment
FRACTION NUMBER
Full Text
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