The effect of selective modification of tryptophan, lysine and arginine residues of basic brain protein on encephalitogenic activity
Swanborg, R.H.
Journal of Immunology 105(4): 865-871
1970
ISSN/ISBN: 0022-1767 PMID: 4097144 Document Number: 20130
Document emailed within 1 workday
Related Documents
Vernigora, A.N.; Gengin, M.T. 1993: Properties of basic (splitting off arginine and lysine residues) carboxypeptidases and their role in the functioning of biologically active peptides Ukrainskii Biokhimicheskii Zhurnal 65(1): 3-12Dunkley, P.R.; Coates, A.S.; Carnegie, P.R. 1973: Communications. Encephalitogenic activity of peptides from the smaller basic protein of rat myelin Journal of Immunology 110(6): 1699-1701
Lentini, A.; Tabolacci, C.; Melino, S.; Provenzano, B.; Beninati, S. 2010: Post-translational modification of glutamine and lysine residues of HIV-1 aspartyl protease by transglutaminase increases its catalytic activity Biochemical and Biophysical Research Communications 393(3): 546-550
Marques-Negrão, H.H.; Mantovani, B. 1982: Chemical modification of IgG tryptophan residues: effect on competition with immune complexes for macrophage receptors Brazilian Journal of Medical and Biological Research 15(1): 43-47
Sadler, E.; Weiner, M.; Buterbaugh, G.G. 1983: Effect of streptozotocin-induced diabetes on tryptophan oxygenase activity and brain tryptophan levels in rats Research Communications in Chemical Pathology and Pharmacology 42(1): 37-50
Greer, J.M.; Kuchroo, V.K.; Sobel, R.A.; Lees, M.B. 1992: Identification and characterization of a second encephalitogenic determinant of myelin proteolipid protein (residues 178-191) for SJL mice Journal of Immunology 149(3): 783-788
Lapuk, V.A.; Khatiashvili, N.M.; Chukhrova, A.I.; Kaverzneva, E.D. 1985: Modification of tryptophan residues in immunoglobulin M by 2-hydroxy-5-nitrobenzyl bromide Biokhimiia 50(2): 237-242
Whitham, R.H.; Jones, R.E.; Hashim, G.A.; Hoy, C.M.; Wang, R.Y.; Vandenbark, A.A.; Offner, H. 1991: Location of a new encephalitogenic epitope (residues 43 to 64) in proteolipid protein that induces relapsing experimental autoimmune encephalomyelitis in PL/J and (SJL x PL)F1 mice Journal of Immunology 147(11): 3803-3808
Adamovich, T.V.; Pikuleva, I.A.; Usanov, S.A.; Chashchin, V.L. 1989: Study of the role of lysine residues of the cholesterol hydroxylating cytochrome P-450 by a method of chemical modification Biokhimiia 54(7): 1206-1216
Wajgt, A.; Wiktorowicz, K.; Torliński, L. 1974: Administration of encephalitogenic basic protein in the diagnosis of multiple sclerosis and Guillain-Barré syndrome Neurologia i Neurochirurgia Polska 8(5): 653-662
Raziuddin, S.; Morrison, D.C. 1981: Binding of bacterial endotoxin (LPS) to encephalitogenic myelin basic protein and modulation of characteristic biologic activities of LPS Journal of Immunology 126(3): 1030-1035
Prieels, J.P.; Dolmans, M.; Léonis, J.; Brew, K. 1974: Modification of tyrosine residues in human alpha-lactalbumin: effect upon the lactose-synthase specifier activity Archives Internationales de Physiologie et de Biochimie 82(5): 1003-1005
Saito, M.; Nagai, Y.; Tsumita, T. 1972: A novel method for the extraction of encephalitogenic protein from bovine brain Japanese Journal of Experimental Medicine 42(5): 473-481
McCarron, R.; McFarlin, D.E. 1988: Adoptively transferred experimental autoimmune encephalomyelitis in SJL/J, PL/J, and (SJL/J x PL/J)F1 mice. Influence of I-A haplotype on encephalitogenic epitope of myelin basic protein Journal of Immunology 141(4): 1143-1149
Konopińska, D.; Nawrocka, E.; Siemion, I.Z.; Szymaniec, S.; Slopek, S. 1979: Tuftsin and its analogues. III. Modification of basic amino acid residues in the peptide chain Archivum Immunologiae et Therapiae Experimentalis 27(1-2): 151-157
Swanborg, R.H. 1975: Antigen-induced inhibition of experimental allergic encephalomyelitis. III. Localization of an inhibitory site distinct from the major encephalitogenic determinant of myelin basic protein Journal of Immunology 114(1 Part 1): 191-194
Reshetniak, I.K.; Burshteĭn, E.A. 1997: Assignment of a component of protein fluorescence spectra to tryptophan residues by their three-dimensional microoenvironmental properties Biofizika 42(2): 293-300
Minta, J.O.; Aziz, E. 1981: Analysis of the reactive site peptide bond in C1-inhibitor by chemical modification of tyrosyl, lysyl, and arginyl residues: the essential role of lysyl residues in the functional activity of C1-INH Journal of Immunology 126(1): 250-255
Yo, S.L.; MacPherson, C.F. 1972: Studies on brain antigens. V. Purification and partial characterization of an anti-encephalitogenic spinal cord protein (SCP) Journal of Immunology 109(5): 1009-1016
Dobretsov, G.E.; Zakomyrdin, I.A.; Spirin, M.M.; Booker, D.; Kharitonenkov, I.G. 1982: Localization of the tryptophan residues of influenza virus matrix protein in reconstructed proteoliposomes: a fluorescent analysis Voprosy Virusologii 27(4): 432-437