Characterization of the reactivity pattern of murine monoclonal antibodies against wild-type hepatitis B surface antigen to G145R and other naturally occurring "a" loop escape mutations

被引:72
作者
Cooreman, MP
van Roosmalen, VH
Morsche, RT
Sünnen, CMG
Schoondermark-Van de Ven, EME
Jansen, JBMJ
Tytgat, GNJ
de Wit, PLM
Paulij, WP
机构
[1] Univ Amsterdam, Acad Med Ctr, Dept Gastroenterol & Hepatol, NL-1105 AZ Amsterdam, Netherlands
[2] Organon Teknika BV, Dept Biosci & Chem, Boxtel, Netherlands
[3] Univ Nijmegen, St Radboud Hosp, Dept Gastroenterol & Hepatol, Nijmegen, Netherlands
关键词
D O I
10.1002/hep.510300508
中图分类号
R57 [消化系及腹部疾病];
学科分类号
摘要
The hepatitis B surface antigen (HBsAg) "a" domain harbors major B-cell epitopes. Viruses with mutations in this region emerge after vaccination or during hepatitis B immune globulin (HBIg) prophylaxis. A strain with G145R replacement has been almost invariably isolated as a major escape mutant. We investigated mutant antigen-antibody interactions with direct binding assays. G145R and 16 other naturally occurring recombinant HBsAg mutants were expressed in mammalian Cos-1 cells. The reactivity of a panel of 28 murine anti-hepatitis B surface antigen (anti-HBs) monoclonal antibodies to mutant antigens was measured with enzyme immunoassay and expressed as percentage compared with the wild-type (wt) HBsAg signal for each antibody. All point-mutated proteins displayed diffuse intracellular immunofluorescent labeling corresponding to a secretory pathway. Monoclonal antibodies (mAbs) were classified according to different binding patterns. The effect of mutations on antibody binding differs depending on the amino acid involved and on the location within the "a" loop. As expected, most antibodies had absent or negligible binding (<40%), notably with residue 145 replacements. However, we identified antibodies that reacted with conformational epitopes but nevertheless had adequate reactivity (>40%) with all mutant antigens, including G145R. The effect of G145R was more pronounced than that of G145A. A subgroup of antibodies had substantially increased recognition (>120%) of antigens with mutations in the first loop. We demonstrated that antibodies can be selected or combined that react with all mutants investigated, including G145R. These data offer perspectives for improving anti-HBs-based protection against hepatitis B.
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页码:1287 / 1292
页数:6
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共 54 条
[1]  
Asahina Y, 1996, J MED VIROL, V48, P171, DOI 10.1002/(SICI)1096-9071(199602)48:2<171::AID-JMV9>3.0.CO
[2]  
2-6
[3]   MUTATIONS THAT CHANGE THE IMMUNOLOGICAL SUBTYPE OF HEPATITIS-B VIRUS SURFACE-ANTIGEN AND DISTINGUISH BETWEEN ANTIGENIC AND IMMUNOGENIC DETERMINATION [J].
ASHTONRICKARDT, PG ;
MURRAY, K .
JOURNAL OF MEDICAL VIROLOGY, 1989, 29 (03) :204-214
[4]   Evidence for selection of hepatitis B mutants after liver transplantation through peripheral blood mononuclear cell infection [J].
Brind, A ;
Jiang, JJ ;
Samuel, D ;
Gigou, M ;
Feray, C ;
Brechot, C ;
Kremsdorf, D .
JOURNAL OF HEPATOLOGY, 1997, 26 (02) :228-235
[5]  
BROWN JL, 1992, HEPATOLOGY, V15, P141
[6]   MUTATIONS OF SOME CRITICAL AMINO-ACID-RESIDUES IN THE HEPATITIS-B VIRUS SURFACE-ANTIGEN [J].
BRUCE, SA ;
MURRAY, K .
JOURNAL OF MEDICAL VIROLOGY, 1995, 46 (02) :157-161
[7]   Hepatitis B virus envelope variation after transplantation with and without hepatitis B immune globulin prophylaxis [J].
Carman, WF ;
Trautwein, C ;
vanDeursen, FJ ;
Colman, K ;
Dornan, E ;
McIntyre, G ;
Waters, J ;
Kliem, V ;
Muller, R ;
Thomas, HC ;
Mannis, MP .
HEPATOLOGY, 1996, 24 (03) :489-493
[8]   VACCINE-INDUCED ESCAPE MUTANT OF HEPATITIS-B VIRUS [J].
CARMAN, WF ;
ZANETTI, AR ;
KARAYIANNIS, P ;
WATERS, J ;
MANZILLO, G ;
TANZI, E ;
ZUCKERMAN, AJ ;
THOMAS, HC .
LANCET, 1990, 336 (8711) :325-329
[9]   FULMINANT REACTIVATION OF HEPATITIS-B DUE TO ENVELOPE PROTEIN MUTANT THAT ESCAPED DETECTION BY MONOCLONAL HBSAG ELISA [J].
CARMAN, WF ;
KORULA, J ;
WALLACE, L ;
MACPHEE, R ;
MIMMS, L ;
DECKER, R .
LANCET, 1995, 345 (8962) :1406-1407
[10]  
Carman WF, 1997, HEPATOLOGY, V26, P1658, DOI 10.1002/hep.510260640