Enhanced Binding of Antibodies to Neutralization Epitopes following Thermal and Chemical Inactivation of Human Immunodeficiency Virus Type 1

Author:

Grovit-Ferbas K.123,Hsu J. F.42,Ferbas J.123,Gudeman V.12,Chen I. S. Y.143

Affiliation:

1. Departments of Medicine1 and

2. Department of Medicine, VA Greater Los Angeles Healthcare System,2 and

3. UCLA AIDS Institute,3 Los Angeles, California

4. Microbiology and Immunology,4 UCLA School of Medicine,

Abstract

ABSTRACT Inactivation of viral particles is the basis for several vaccines currently in use. Initial attempts to use simian immunodeficiency virus to model a killed human immunodeficiency virus type 1 (HIV-1) vaccine were unsuccessful, and limited subsequent effort has been directed toward a systematic study of the requirements for a protective killed HIV-1 vaccine. Recent insights into HIV-1 virion and glycoprotein structure and neutralization epitopes led us to revisit whether inactivated HIV-1 particles could serve as the basis for an HIV-1 vaccine. Our results indicate that relatively simple processes involving thermal and chemical inactivation can inactivate HIV-1 by at least 7 logs. For some HIV-1 strains, significant amounts of envelope glycoproteins are retained in high-molecular-weight fractions. Importantly, we demonstrate retention of each of three conformation-dependent neutralization epitopes. Moreover, reactivity of monoclonal antibodies directed toward these epitopes is increased following treatment, suggesting greater exposure of the epitopes. In contrast, treatment of free envelope under the same conditions leads only to decreased antibody recognition. These inactivated virions can also be presented by human dendritic cells to direct a cell-mediated immune response in vitro. These data indicate that a systematic study of HIV-1 inactivation, gp120 retention, and epitope reactivity with conformation-specific neutralizing antibodies can provide important insights for the development of an effective killed HIV-1 vaccine.

Publisher

American Society for Microbiology

Subject

Virology,Insect Science,Immunology,Microbiology

Reference47 articles.

1. Production of acquired immunodeficiency syndrome-associated retrovirus in human and nonhuman cells transfected with an infectious molecular clone

2. AIDS Vaccine Evaluation Group Protocol outlines. AVEG information handbook. [Online.] http://camelot.emmes.com/avctn/index.htm 1999

3. Cellular proteins bound to immunodeficiency viruses: implications for pathogenesis and vaccines;Arthur L. O.;Science,1992

4. Chemical inactivation of retroviral infectivity by targeting nucleocapsid protein zinc fingers: a candidate SIV vaccine;Arthur L. O.;AIDS Res. Hum. Retroviruses,1998

5. Why do we not have an HIV vaccine and how can we make one?;Burton D. R.;Nat. Med.,1998

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