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Biochemistry glycoproteins

W. J. Leimar2, Biochemistry of Glycoproteins andProteogJycans, Plenum Press, New York, 1980. [Pg.490]

Lennarz, W. J., 1980. The Biochemistry of Glycoproteins and Proteoglycans. New York Plenum Press. [Pg.237]

Figure 47-2. Structures of two 0-linked oligosaccharides found in (A) submaxillary mucins and (B) fe-tuin and in the sialoglycoprotein of the membrane of human red blood cells. (Modified and reproduced, with permission, from LennarzWJ The Biochemistry of Glycoproteins and Proteoglycans. Plenum Press, 1980.)... Figure 47-2. Structures of two 0-linked oligosaccharides found in (A) submaxillary mucins and (B) fe-tuin and in the sialoglycoprotein of the membrane of human red blood cells. (Modified and reproduced, with permission, from LennarzWJ The Biochemistry of Glycoproteins and Proteoglycans. Plenum Press, 1980.)...
Maras, M., Saelens, X., Laroy, W. et al. (1997) In vitro conversion of the carbohydrate moiety of fungal glycoproteins to mammalian-type oligosaccharides - evidence for JV-acetylglucosaminyltransferase-I-accepting glycans from Trichoderma reesei. European Journal of Biochemistry, 249 (3), 701-707. [Pg.57]

Renkema, G.H., Boot, R.G., Au, F.L., Donker-Koopman, W.E., Strijland, A., Muijsers, A.O., Hrebicek, M. and Aerts, J.M. (1998) Chitotriosidase, a chitinase, and the 39-kDa human cartilage glycoprotein, a chitin-binding lectin, are homologues of family 18 glycosyl hydrolases secreted by human macrophages. European Journal of Biochemistry 251, 504-509. [Pg.217]

Burch, M.K. and Morgan, W.T. (1985) Preferred heme binding sites of histidine-rich glycoprotein. Biochemistry 24, 5919-5924. [Pg.333]

Koide, T., Foster, D.C., Yoshitake, S. and Davie, E.W. (1986) Amino acid sequence of human histidine-rich glycoprotein derived from the nucleotide sequence of its cDNA. Biochemistry 25, 2220-2225. [Pg.335]

Morgan, W.T. (1981) Interactions of the histidine-rich glycoprotein of serum with metals. Biochemistry 20, 1054-1061. [Pg.336]

Endicott, J. A., Ling, V., The biochemistry of P-glycoprotein-mediated multidrug resistance, Annu. Rev. Biochem. 1989, 58, 137-171. [Pg.487]

Human P-glycoprotein exhibits reduced affinity for substrates during a catalytic transition state, Biochemistry... [Pg.488]

Romsicki, Y., Sharom, F. J., Phospholipid flippase activity of the reconstituted P-glycoprotein multidrug transporter, Biochemistry 2001, 40, 6937-6947. [Pg.488]

Seelig, A., Real-time monitoring of P-glycoprotein activation in living cells, Biochemistry 2002, 41, 8050—8057. [Pg.491]

Cutler, G. B., Fojo, T., Bates, S. E., Steroid treatment, accumulation, and antagonism of P-glycoprotein in multidrug-resistant cells, Biochemistry 1996, 35, 4820-4827. [Pg.492]

The scientific work of Gottschalk falls into three, well-defined periods. His early work was mainly in the general area of the metabolism of carbohydrates and of biologically related compounds. Then, about 1947, he became involved in studies on the interaction between the influenza virion and the surface of the red cell, and this led him to his important work on sialic acid. During the last period, Gottschalk extended his interest to the general chemistry and biochemistry of glycoproteins. [Pg.5]

Danbolt, N. C., Pines, G., and Kanner, B. I. (1990) Purification and reconstitution of the sodium- and potassium-coupled glutamate transport glycoprotein from rat brain. Biochemistry 29,6734-6740. [Pg.157]

MRC Glycoprotein Structure/Function Group, Department of Biochemistry and Molecular Biology, University College London, London, WC1E 6BT, England... [Pg.311]

Seelig, A. (1998) A general pattern for substrate recognition by P-glycoprotein. European Journal of Biochemistry, 251, 252-261. [Pg.394]

Strous, G. J. and Dekker, J. Mucin-Type Glycoproteins. Critical Reviews in Biochemistry and Molecular Biology, 1992, 27(2), 57-92. [Pg.232]

Figure19.1 A schematic diagram of a plasma membrane. Integral proteins are embedded in a bilayer composed of phospholipids (shown, for clarity, in much greater proportion than they have in biological membranes) and cholesterol. The carbohydrate components of glycoproteins and glycolipids occur only on the external face of the membrane. (Reproduced from D. Voet and J. G. Voet, Biochemistry, 3rd edn, 2004. 2004, Donald and Judith G Voet. Reprinted with permission of John Wiley and Sons, Inc.)... Figure19.1 A schematic diagram of a plasma membrane. Integral proteins are embedded in a bilayer composed of phospholipids (shown, for clarity, in much greater proportion than they have in biological membranes) and cholesterol. The carbohydrate components of glycoproteins and glycolipids occur only on the external face of the membrane. (Reproduced from D. Voet and J. G. Voet, Biochemistry, 3rd edn, 2004. 2004, Donald and Judith G Voet. Reprinted with permission of John Wiley and Sons, Inc.)...
AMINO ACIDS, PEPTIDES PROTEINS Recommended nomenclature and symbolism for amino acids and peptides J. Biol Chem. (1985) 260, 14-42 Biochemistry (1975) 14, 449-462 Abbreviations and symbols for the description of the conformation of polypeptide chains /. Biol Chem. (1970) 245, 6489-6497 Nomenclature of iron-sulfur proteins Eur. J. Biochem. (1979) 93, 427-430 Corrections Eur. J. Biochem. (1979) 102, 315 Nomenclature of peptide hormones J. Biol Chem. (1975) 250, 3215-3216 Nomenclature of human immunoglobulins Eur. J. Biochem. (1974) 45, 5-6 Recommended nomenclature of glycoproteins, glyco-peptides, and peptidoglycans /. Biol Chem. (1987) 262, 13-18 Recommended nomenclature of electron-transfer proteins... [Pg.83]


See other pages where Biochemistry glycoproteins is mentioned: [Pg.25]    [Pg.188]    [Pg.195]    [Pg.544]    [Pg.17]    [Pg.53]    [Pg.164]    [Pg.313]    [Pg.314]    [Pg.123]    [Pg.492]    [Pg.6]    [Pg.161]    [Pg.1087]    [Pg.1088]    [Pg.3]    [Pg.4]    [Pg.9]    [Pg.884]    [Pg.31]    [Pg.131]    [Pg.377]    [Pg.58]    [Pg.56]    [Pg.239]    [Pg.62]    [Pg.70]   
See also in sourсe #XX -- [ Pg.17 ]




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