Targeting of HIV-1 Antigens for Rapid Intracellular Degradation Enhances Cytotoxic T Lymphocyte (CTL) Recognition and the Induction of De Novo CTL Responses In Vivo After Immunization
Open Access
- 3 March 1997
- journal article
- research article
- Published by Rockefeller University Press in The Journal of Experimental Medicine
- Vol. 185 (5) , 909-920
- https://doi.org/10.1084/jem.185.5.909
Abstract
CD8+ cytotoxic T lymphocytes (CTLs) have the ability to recognize and eliminate virally infected cells before new virions are produced within that cell. Therefore, a rapid and vigorous CD8+ CTL response, induced by vaccination, can, in principle, prevent disseminated infection in vaccinated individuals who are exposed to the relevant virus. There has thus been interest in novel vaccine strategies that will enhance the induction of CD8+ CTLs. In this study, we have tested the hypothesis that targeting an antigen to undergo more efficient processing by the class I processing pathway will elicit a more vigorous CD8+ CTL response against that antigen. Targeting a type I transmembrane protein, the HIV-1 envelope (env) protein, for expression in the cytoplasm, rather than allowing its normal co-translational translocation into the endoplasmic reticulum, sensitized target cells expressing this mutant more rapidly for lysis by an env-specific CTL clone. Additionally, a greatly enhanced de novo env-specific CTL response was induced in vivo after immunization of mice with recombinant vaccinia vectors expressing the cytoplasmic env mutant. Similarly, targeting a cytoplasmic protein, HIV-1 nef, to undergo rapid cytoplasmic degradation induced a greatly enhanced de novo nef-specific CD8+ CTL response in vivo after immunization of mice with either recombinant vaccinia vectors or DNA expression plasmids expressing the degradation targeted nef mutant. The targeting of viral antigens for rapid cytoplasmic degradation represents a novel and highly effective vaccine strategy for the induction of enhanced de novo CTL responses in vivo.Keywords
This publication has 69 references indexed in Scilit:
- Proteasome and class I antigen processing and presentationMolecular Biology Reports, 1995
- Transporter-independent processing of HIV-1 envelope protein for recognition by CD8+ T cellsNature, 1993
- Restoration of Viral Immunity in Immunodeficient Humans by the Adoptive Transfer of T Cell ClonesScience, 1992
- Assembly and function of the two ABC transporter proteins encoded in the human major histocompatibility complexNature, 1992
- Antigen presentation in virus infectionCurrent Opinion in Immunology, 1992
- Transport Protein Genes in the Murine MHC: Possible Implications for Antigen ProcessingScience, 1990
- A gene in the human major histocompatibility complex class II region controlling the class I antigen presentation pathwayNature, 1990
- Sequences encoded in the class II region of the MHC related to the 'ABC' superfamily of transportersNature, 1990
- MHC class II region encoding proteins related to the muKidrug resistance family of transmembrane transportersNature, 1990
- Defective presentation to class I-restricted cytotoxic T lymphocytes in vaccinia-infected cells is overcome by enhanced degradation of antigen.The Journal of Experimental Medicine, 1988