Elucidation of Functionally Significant Structural Modifications
137
Gorman JJ, Ferguson BL, Speelman D, Mills J (1997) Determination of the disulfide bond arrangement of human respiratory syncytial virus attachment (G) protein by matrix-assisted laser desorption/ionization tirne-of-flight mass spectrometry. Protein Science 6: 1308-1315
Gorman JJ, Nestorowicz A, Mitchell SJ, Corino GL, Selleck PW (1988) Characterization of the sites of
proteolytic activation of Newcastle disease virus membrane glycoprotein precursors. J BioI Chern
263: 12522-12531
Gorman JJ (1987) Fluorescent labeling of cysteinyl residues to facilitate electrophoretic isolation of
proteins suitable for amino-terminal sequence analysis. Anal Biochem 160: 376-387
Gruber C, Levine S (1985) Respiratory syncytial virus polypeptides. IV. The oligosaccharides of the
glycoproteins. J Gen Viro166: 417-432
Hemling ME, Mentzer MA, Capiau C, Carr SA (1996) A multifaceted strategy for the characterization
of recombinant gD-2, a potent herpes vaccine. In: Burlingame AL, Carr SA (eds) Mass Spectrometry in the Biological Sciences. Humana Press, Totowa, N. J., pp 307 -331
Hodder AN, Liu Z-Y, Selleck PW, Corino GL, Shiell BJ, Grix DC, Morrow CJ, Gorman JJ (1994) Characterization of field isolates of Newcastle disease virus using antipeptide antibodies. Avian Diseases
38: 103-118
Hodder AN, Selleck PW, White JR, Gorman JJ (1993) Analysis of pathotype-specific structural features and cleavage activation of Newcastle disease virus membrane glycoproteins using anti peptide
antibodies. J Gen Virol 74: 1081-1091
Homma M (1975) Host-induced modification of Sendai virus. In: Mahy BWJ, Barry RDe (eds) Negative strand viruses. Academic Press, London, pp 685-697
Honda S, Akao E, Suzuki S, Okuda M, Kakehi K, Nakamura J (1989) High-performance liquid chromatography of reducing carbohydrates as strongly-absorbing and electrochemically sensitive 1phenyl-3-methyl-5-pyrazolone derivatives. Anal Biochem 180: 351-357
Hunt DF, Shabanowitz J, Yates JR, Griffin PR (1990) Protein sequence analysis by tandem mass spectrometry. In: McEwen CN, Larsen BS (eds) Mass Spectrometry of Biological Materials. Marcel Dekker Inc., New York, pp 169-195
Karas M, Hillenkamp F (1988) Laser desortion ionization of of proteins with molecular masses
exceeding 10 000 daltons. Anal Chern 60: 2299-2301
Katakuse I, Desiderio DM (1983) Positive and negative ion fast-atom bombardrnent-collisionactivated dissociation -linked-field scanned mass spectra ofleucine enkaphalin. Int J Mass Spectrom Ion Proc 54: 1-15
Kaufmann R, Kirsch D, Spengler B (1994) Sequencing of peptides in a time-of-flight mass spectrometer: evaluation of post source decay following matrix-assisted laser desoption ionisation (MALDI).
International J Mass Spectrom Ion Proc 131: 355-385
Kaufmann R, Spengler B, Lutzenkirchen F (1993) Mass Spectrometric Sequencing of Linear peptides
by Product-ion Analysis in a Reflectron Time-of-flight Mass Spectrometer Using Matrix-assisted
Laser Desorption Ionization. Rapid Commun Mass Spectrom 7: 902-910
Kent SBH (1988) Chemical synthesis of pep tides and proteins. Ann Rev Biochem 57: 957-989
Lopaticki S, Morrow CJ, Gorman JJ (1998) Characterization of pathotype-specific epitopes of Newcastle disease virus fusion glycoproteins by matrix-assisted laser desorption/ionization mass spectrometry and post-source decay sequencing. J Mass Spectrom 33: 950-960
Macfarlane RD, Thorgerson DF (1976) Californium-252 plasma desortion mass spectrometry. Science
191: 920-925
Nagai Y, Klenk H-D, Rott R (1976) Proteolytic cleavage of the viral glycoproteins and its significance
for the virulence of Newcastle disease virus. Virol 72: 494-508
Patterson SD, Katta V (1994) Prompt fragmentation of disulfide-linked peptides during matrixassisted laser desorption ionization mass spectrometry. Anal Chern 66: 3727-3732
Pitt JJ, Gorman JJ (1996) Matrix-assisted laser desorption/ionization time-of-flight mass spectrometry of sialylated glycopeptides and proteins using 2,6-dihydroxyacetophenone as a matrix. Rapid
Commun Mass Spectrom 10: 1786-1788
Pitt JJ, Gorman JJ (1997) Oligosaccharide characterization and quantitation using I-phenyl-3-methyl5-pyrazolone derivatives and matrix-assisted laser desorption/ionization tirne-of-flight mass spectrometry. Anal Biochem 248: 63-75
Purcell AW, Chen W, Ede NJ, Gorman JJ, Fecondo JV, Jackson DC, Zhao Y, McCluskey J ( 1998) Avoidance of self-reactivity results in skewed CTL responses to rare components of synthetic immunogens. J Immunol160: 1085-1090
Rouse J C, Yu W, Martin SA (1995) A comparison of the fragmentation obtained from a reflector
matrix-assisted laser desorption-ionization time-of-flight and a tandem four sector mass spectrometer. J Am Soc Mass Spectrom 6: 822 - 835
Scanlon DB, Corino GL, Shiell BJ, Della-Porta AJ, Manvell R, Alexander DJ, Gorman JJ (1999) Pathotyping isolates of Newcastle disease virus using antipeptide antibodies to regions of their fusion
137
Gorman JJ, Ferguson BL, Speelman D, Mills J (1997) Determination of the disulfide bond arrangement of human respiratory syncytial virus attachment (G) protein by matrix-assisted laser desorption/ionization tirne-of-flight mass spectrometry. Protein Science 6: 1308-1315
Gorman JJ, Nestorowicz A, Mitchell SJ, Corino GL, Selleck PW (1988) Characterization of the sites of
proteolytic activation of Newcastle disease virus membrane glycoprotein precursors. J BioI Chern
263: 12522-12531
Gorman JJ (1987) Fluorescent labeling of cysteinyl residues to facilitate electrophoretic isolation of
proteins suitable for amino-terminal sequence analysis. Anal Biochem 160: 376-387
Gruber C, Levine S (1985) Respiratory syncytial virus polypeptides. IV. The oligosaccharides of the
glycoproteins. J Gen Viro166: 417-432
Hemling ME, Mentzer MA, Capiau C, Carr SA (1996) A multifaceted strategy for the characterization
of recombinant gD-2, a potent herpes vaccine. In: Burlingame AL, Carr SA (eds) Mass Spectrometry in the Biological Sciences. Humana Press, Totowa, N. J., pp 307 -331
Hodder AN, Liu Z-Y, Selleck PW, Corino GL, Shiell BJ, Grix DC, Morrow CJ, Gorman JJ (1994) Characterization of field isolates of Newcastle disease virus using antipeptide antibodies. Avian Diseases
38: 103-118
Hodder AN, Selleck PW, White JR, Gorman JJ (1993) Analysis of pathotype-specific structural features and cleavage activation of Newcastle disease virus membrane glycoproteins using anti peptide
antibodies. J Gen Virol 74: 1081-1091
Homma M (1975) Host-induced modification of Sendai virus. In: Mahy BWJ, Barry RDe (eds) Negative strand viruses. Academic Press, London, pp 685-697
Honda S, Akao E, Suzuki S, Okuda M, Kakehi K, Nakamura J (1989) High-performance liquid chromatography of reducing carbohydrates as strongly-absorbing and electrochemically sensitive 1phenyl-3-methyl-5-pyrazolone derivatives. Anal Biochem 180: 351-357
Hunt DF, Shabanowitz J, Yates JR, Griffin PR (1990) Protein sequence analysis by tandem mass spectrometry. In: McEwen CN, Larsen BS (eds) Mass Spectrometry of Biological Materials. Marcel Dekker Inc., New York, pp 169-195
Karas M, Hillenkamp F (1988) Laser desortion ionization of of proteins with molecular masses
exceeding 10 000 daltons. Anal Chern 60: 2299-2301
Katakuse I, Desiderio DM (1983) Positive and negative ion fast-atom bombardrnent-collisionactivated dissociation -linked-field scanned mass spectra ofleucine enkaphalin. Int J Mass Spectrom Ion Proc 54: 1-15
Kaufmann R, Kirsch D, Spengler B (1994) Sequencing of peptides in a time-of-flight mass spectrometer: evaluation of post source decay following matrix-assisted laser desoption ionisation (MALDI).
International J Mass Spectrom Ion Proc 131: 355-385
Kaufmann R, Spengler B, Lutzenkirchen F (1993) Mass Spectrometric Sequencing of Linear peptides
by Product-ion Analysis in a Reflectron Time-of-flight Mass Spectrometer Using Matrix-assisted
Laser Desorption Ionization. Rapid Commun Mass Spectrom 7: 902-910
Kent SBH (1988) Chemical synthesis of pep tides and proteins. Ann Rev Biochem 57: 957-989
Lopaticki S, Morrow CJ, Gorman JJ (1998) Characterization of pathotype-specific epitopes of Newcastle disease virus fusion glycoproteins by matrix-assisted laser desorption/ionization mass spectrometry and post-source decay sequencing. J Mass Spectrom 33: 950-960
Macfarlane RD, Thorgerson DF (1976) Californium-252 plasma desortion mass spectrometry. Science
191: 920-925
Nagai Y, Klenk H-D, Rott R (1976) Proteolytic cleavage of the viral glycoproteins and its significance
for the virulence of Newcastle disease virus. Virol 72: 494-508
Patterson SD, Katta V (1994) Prompt fragmentation of disulfide-linked peptides during matrixassisted laser desorption ionization mass spectrometry. Anal Chern 66: 3727-3732
Pitt JJ, Gorman JJ (1996) Matrix-assisted laser desorption/ionization time-of-flight mass spectrometry of sialylated glycopeptides and proteins using 2,6-dihydroxyacetophenone as a matrix. Rapid
Commun Mass Spectrom 10: 1786-1788
Pitt JJ, Gorman JJ (1997) Oligosaccharide characterization and quantitation using I-phenyl-3-methyl5-pyrazolone derivatives and matrix-assisted laser desorption/ionization tirne-of-flight mass spectrometry. Anal Biochem 248: 63-75
Purcell AW, Chen W, Ede NJ, Gorman JJ, Fecondo JV, Jackson DC, Zhao Y, McCluskey J ( 1998) Avoidance of self-reactivity results in skewed CTL responses to rare components of synthetic immunogens. J Immunol160: 1085-1090
Rouse J C, Yu W, Martin SA (1995) A comparison of the fragmentation obtained from a reflector
matrix-assisted laser desorption-ionization time-of-flight and a tandem four sector mass spectrometer. J Am Soc Mass Spectrom 6: 822 - 835
Scanlon DB, Corino GL, Shiell BJ, Della-Porta AJ, Manvell R, Alexander DJ, Gorman JJ (1999) Pathotyping isolates of Newcastle disease virus using antipeptide antibodies to regions of their fusion
