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PMID: 14505925 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

Analysis of the immunogenic properties of a single-chain polypeptide analogue of the HIV-1 gp120-CD4 complex in transgenic mice that produce human immunoglobulins.

Vaccine ·Vol. 21 ·No. 27-30 ·2003-10-01 ·Pages 4421-9

He Y, D'Agostino P, Pinter A

Abstract

The potential utility of gp120 complexed to CD4 in HIV-1 vaccine development has been shown by studies in which such complexes were able to induce antibodies to cryptic gp120 epitopes and to generate broadly neutralizing humoral responses. Recently, a full-length single-chain (FLSC) analogue of the gp120-CD4 receptor complex, consisting of HIV-1 Bal gp120 joined to the D1D2 domains of CD4 by a 20-amino-acid linker, has been described. We tested the immunogenicity of this protein in transgenic XMG2 XenoMouse) mice that express human IgG2 with kappa light chain loci and that model human humoral immune responses. Six mice immunized with purified FLSC all developed high antibody titers for the immunogen, but none of the sera possessed neutralizing activities against HIV(BaL) or HIV(SF162) virus. A panel of 39 human monoclonal antibodies (mAbs) were generated from an immunized mouse. Only three of these mAbs recognized linear epitopes. One of these mapped to the V3 region and two to the C-terminus of gp120. The majority of the mAbs (36/39) were directed against one of two distinct conformational epitopes specific for FLSC. Binding of representative mAbs to these epitopes was not blocked by antibodies to a number of known targets on gp120, but was enhanced by binding of 17b, directed to a CD4-induced epitope on gp120. None of the FLSC-induced mAbs possessed neutralization activity against either HIV-1 BaL or SF162. These results suggest that a major portion of the antibody response against the FLSC protein may be directed against immunodominant conformational epitopes unique to the fusion protein that do not mediate viral neutralization. This property may limit the utility of this chimeric molecule as an HIV-1 vaccine candidate.

MeSH Terms
AIDS Vaccines/immunology Animals Antibodies, Monoclonal/biosynthesis,genetics Antibody Specificity CD4 Antigens/chemistry,immunology Epitopes/immunology HIV Envelope Protein gp120/chemistry,immunology HIV-1/immunology Humans Hybridomas/immunology Immunoglobulins/biosynthesis Mice Mice, Transgenic Neutralization Tests Peptides/chemistry,immunology Precipitin Tests Vaccines, Synthetic/immunology
Chemicals
AIDS Vaccines Antibodies, Monoclonal CD4 Antigens Epitopes HIV Envelope Protein gp120 Immunoglobulins Peptides Vaccines, Synthetic
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
He Yuxian
Laboratory of Retroviral Biology, Public Health Research Institute, 225 Warren Street, Newark, NJ 07103-3506, USA.
D'Agostino Paul
Pinter Abraham
Article Info
Journal
Vaccine
Abbr.
Vaccine
ISSN
0264-410X
Published
2003-10-01
Pages
4421-9
Language
English
Region
Netherlands
NLM ID
8406899
Subset
IM
Grants
NIAID NIH HHS · P30AI027742 · United States
NIAID NIH HHS · R01 AI46283 · United States
NIAID NIH HHS · R01 AI50452 · United States
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