DwekRA. Glycobiology: towards understanding the function of sugars.Biochem Soc Trans1995; 3: 23.
2.
FeiziT.Demonstration by monoclonal antibodies that carbohydrate structures of glycoproteins and glycolipids are onco-developmental antigens.Nature1985; 314: 53–7.
3.
CrockerPR, FeiziT.Carbohydrate recognition systems: functional triads in cell–cell interactions.Curr Opin Struct Biol (in press).
HagopianA, EylarEH. Glycoprotein biosynthesis: studies on the receptor specificity of the polypeptide: N-acetylgalactosaminyl-transferase from bovine submaxillary glands.Arch Biochem Biophys1968; 128: 422–33.
8.
RosemanS.The synthesis of complex carbohydrates by multi-glycosyltransferase systems and their potential function in intercellular adhesion.Chen Phys Lipids1970; 5: 270–97.
9.
NilssonT, WarrenG.Retention and retrieval in the endoplasmic reticulum and the Golgi apparatus.Curr Opin Cell Biol1994; 6: 517–21.
10.
FarquharMG, PaladeG.The Golgi apparatus (complex)—(1954–81) from artifact to center stage.J Cell Biol1981; 91: 77–103.
11.
RothJ, BergerEG. Immunocytochemical localisation of galactosyltransferase in HeLa cells: co-distribution with thiamine pyrophosphatase in trans-Golgi cisternae.J Cell Biol1982; 93: 223–9.
12.
RothJ, TaatjesDJ, LucocqJM, WeinsteinJ, PaulsonJC. Demonstration of an extensive trans-tubular network continuous with the Golgi apparatus stack that may function in glycosylation.Cell1985; 43: 287–95.
13.
RabouilleC, HuiN, HunteF, KieckbuschR, BergerEG, WarrenG, NilssonTT. Mapping the distribution of Golgi enzymes involved in the construction of complex oligosaccharides.J Cell Sci1995; 108: 1617–27.
14.
BergerEG, ThurnherM.Clues to the cell-sepcific synthesis of complex carbohydrates.News Physiol Sci1993; 8: 57–60.
15.
MalissardM, BorsigL, Di MarcoS, GrutterMG, KraglU, WandreyC, BergerEG. Recombinant soluble β1,4 galactosyltransferases expressed in saccharomyces cerevisiae. Purification, characterisation and comparison with human enzyme.Eur J Biochem1996; 239: 340–8.
16.
DwekRA, LellouchC, WormaldMR. Glycobiology: the function of sugar in the IgG molecule.J Anat1995; 187: 279–92.
17.
DwekRA. Glycobiology: more functions for oligosaccharides.Science1995; 269: 1234–5.
18.
LuX, MehtaA, DwekRA, ButtersRD, BlockTM. Evidence that N-linked glycosylation is necessary for hepatitis B virus secretion.J Virol1995; 213: 660–5.
19.
FischerPB, CollinM, KarlssonGB.The α-glucosidase inhibitor N-butyldeoxynojiuimycin inhibits human immunodeficiency virus entry at the level of post-CD4 binding.J Virol1995; 69: 5791–7.
20.
PlattFM, NeisesGR, KarlssonGB, DwekRA, ButtersTD. N-butyldeoxynojiuimycin inhibits glycolipid biosynthesis but does not affect N-linked oligosaccharide processing.J Biol Chem1994; 269: 27108–14.
FeiziT, ChildsRA. Carbohydrates as antigenic determinants of glycoproteins.Biochem J1987; 245: 1–11.
23.
FeiziT, StollMS, YuenCT, ChaiW, LawsonAM. Neoglycolipids—probes of oligosaccharide structure, antigenicity and function.Methods Enzymol1993; 230: 484–519.
24.
AubJC, SanfordBH, CoteMN. Studies on reactivity of tumor and normal cells to a wheat germ agglutinin.Proc Natl Acad Sci USA1965; 54: 396–9.
25.
ReeseMR, ChowDA. Tumor progression in vivo: increase soybean agglutinin lectin binding, N-acetylgalactosamine specific lectin expression and liver metastasis potential.Cancer Res1992; 52: 5235–43.
26.
LongeneckerBM, ReddishM, KogantyR, MacLeanGD. Specificity of the IgG response in mice and human breast cancer patients following immunization against synthetic sialyl-Tn, an epitope with possible functional significance in metastasis.Adv Exp Med Biol1994; 353: 105–24.
27.
LotanR, RazA.Lectins in cancer cells.Ann NY Acad Sci1988; 551: 385–96.
28.
AxfordJS. Second Jenner International Glycoimmunology Meeting.Ann Rheum Dis1992; 51: 1269–85.
29.
AxfordJS. Third Jenner International Glycoimmunology Meeting.Glycosylation Dis1994; 3: 197–227.
AxfordJS. Oligosaccharides: an optional extra or of relevance to disease mechanisms in rheumatology?J Rheumatol1991; 18: 1124–7.
33.
AxfordJS. Glycosylation and rheumatic disease: more than icing on the cake.J Rheumatol1994; 21: 1791–5.
34.
AlaviA, AxfordJS In: IsenbergDA, RademacherTW, eds. The Glycosyltransferases From Abnormalities of IgG Glycosylation and Immunological Disorders.Bristol: Wiley, 1996.
35.
VarkiA.Biological roles of oligosaccharides: all of the theories are correct.Glycobiology1993; 3(2): 97–130.
36.
ParekhB, DwekRA, SuttonBJ.Association of rheumatoid arthritis and primary osteoarthritic with changes in the glycosylation pattern of total serum IgG.Nature1985; 316: 452–7.
SoltysAJ, HayFC, BondA.The binding of synovial tissue-derived human monoclonal IgM rheumatoid factor to IgG preparations of differing galactose content.Scand J Immunol1994; 40: 135–43.
39.
MalhotraR, WormaldMR, RuddPM, FischerPB, DwekRA, SimRB. Glycosylation changes of IgG associated with rheumatoid arthritis can active complement via the mannose-binding protein.Nature Med1995; 1: 237–43.
40.
RademacherTW, WilliamsP, DwekRA. Agalactosyl glycoforms of IgG autoantibodies are pathogenic.Proc Natl Acad Sci USA1994; 91: 6123–7.
41.
AxfordJS, SumarN, AlaviA.Changes in normal glycosylation mechanisms in autoimmune rheumatic disease.J Clin Invest1991; 34: 357–61.
42.
PoolAJ, AlaviA, AxfordJS. β1, 4 galactosyltransferase isoenzyme changes in serum of patients with rheumatoid arthritis.Br J Rheumatol1996; 35(Suppl. 1): 74.
43.
MartinK, MulherinD, FitzgeraldO, AxfordJS. Flurophore assisted carbohydrate electrophoresis (FACE): a potential tool for the identification of arthritic disease.Br J Rheumatol1995; 34(Suppl. 1): 61.
44.
BondA, AlaviA, AxfordJS, YouinouP, HayFC. The relationship between exposed galactose and N-acetylglucosamine residues on IgG in rheumatoid arthritis.Clin Exp Immunol1996; 105: 99–103.
45.
HounsellEF. The role of glycosylation in cell regulation. In: BittarEE, BittarN, eds. Principles of Medical Biology, vol 4, Cell Chemistry and Physiology: part I. 1995.
46.
HounsellEF, DaviesMJ. Role of protein glycosylation in immune regulation.Ann Rheum Dis1993; 52: S22–9.
47.
HounsellEF. Physiochemical analysis of oligosaccharide determinants of glycoproteins.Adv Carbohydr Chem Biochem1994; 50: 311–50.
48.
RiderCC, CoombeDR, HarropHA.Anti-HIV-1 activity of chemically modified heparin: correlation between binding to the V3 loop of gp 120 and inhibition of cellular HIV-1 infection in vitro.Biochemistry1994; 33: 6974–80.
49.
ChaiW, HounsellEF, BauerCJ, LawsonAM. Characterisation by LSIMS and 1H-NMR of terra-, hexa- and octasaccharides of porcine intestinal heparin.Carbohydrate Res1995; 269: 139–56.
50.
HounsellEF, DaviesMJ, RenoufDV. O-linked protein glycosylation structure and function.Glyconjugate1996; 13: 1–8.
51.
BarboniE, RiveroBP, GeorgeAJT.The glycophosphatidylinositol anchor affects the conformation of the Thy-1 protein.J Cell Sci1995; 108: 587–97.
52.
HounsellEF. 1H-NMR in the structural and conformational analysis of oligosaccharides and glycoconjugates. In: EmsleyJW, FeeneyJ, SutcliffeLH eds. Progress in NMR Spectroscopy 27.New York: Elsevier, 445–74.
53.
HounsellEF, BaileyD.Approaches to the structure determination of oligosaccharides and glycopeptides using NMR. In: LargeDG, WarrenCD, eds. Glycopeptides and Related Compounds: Synthesis, Analysis and Applications.New York: Marcel Dekker, 1996.