Viral diversity is considered a major impediment to the development of an effective HIV-1 vaccine. Despite this diversity, certain protein segments are nearly invariant across the known HIV-1 Group M sequences. We developed immunogens based on the highly conserved elements from the p24gag region according to two principles: the immunogen must (i) include strictly conserved elements of the virus that cannot mutate readily, and (ii) exclude both HIV regions capable of mutating without limiting virus viability, and also immunodominant epitopes located in variable regions. We engineered two HIV-1 p24gag DNA immunogens that express 7 highly Conserved Elements (CE) of 12–24 amino acids in length and differ by only 1 amino acid in each CE (‘toggle site’), together covering >99% of the HIV-1 Group M sequences. Altering intracellular trafficking of the immunogens changed protein localization, stability, and also the nature of elicited immune responses. Immunization of C57BL/6 mice with p55gag DNA induced poor, CD4+ mediated cellular responses, to only 2 of the 7 CE; in contrast, vaccination with p24CE DNA induced cross-clade reactive, robust T cell responses to 4 of the 7 CE. The responses were multifunctional and composed of both CD4+ and CD8+ T cells with mature cytotoxic phenotype. These findings provide a method to increase immune response to universally conserved Gag epitopes, using the p24CE immunogen. p24CE DNA vaccination induced humoral immune responses similar in magnitude to those induced by p55gag, which recognize the virus encoded p24gag protein. The inclusion of DNA immunogens composed of conserved elements is a promising vaccine strategy to induce broader immunity by CD4+ and CD8+ T cells to additional regions of Gag compared to vaccination with p55gag DNA, achieving maximal cross-clade reactive cellular and humoral responses.
HIV-1 p24gag Derived Conserved Element DNA Vaccine Increases the Breadth of Immune Response in Mice
V. Kulkarni,M. Rosati,A. Valentin,B. Ganneru,A. K. Singh,Jian Yan,M. Rolland,C. Alicea,R. K. Beach,Gen-mu Zhang,S. Le Gall,K. Broderick,N. Sardesai,D. Heckerman,B. Mothe,C. Brander,D. Weiner,J. Mullins,G. Pavlakis,B. Felber
Published 2013 in PLoS ONE
ABSTRACT
PUBLICATION RECORD
- Publication year
2013
- Venue
PLoS ONE
- Publication date
2013-03-28
- Fields of study
Biology, Medicine
- Identifiers
- External record
- Source metadata
Semantic Scholar, PubMed
CITATION MAP
EXTRACTION MAP
CLAIMS
CONCEPTS
- c57bl/6 mice
An inbred mouse strain used as the animal model for the immunization experiments.
- conserved elements (ce)
Short highly conserved HIV-1 p24gag segments selected for inclusion in the vaccine constructs.
Aliases: CE
- cross-clade reactive t cell responses
T cell responses that recognize HIV-1 sequences from more than one clade.
- humoral immune responses
Antibody-mediated responses generated by vaccination and measured against HIV-1 antigens.
- intracellular trafficking
The intracellular routing of the immunogen that influences where the protein localizes and how stable it is.
- p24ce dna immunogen
A DNA-based HIV-1 p24gag immunogen engineered to express conserved elements from the p24gag region.
Aliases: p24CE DNA, p24CE
- p24gag protein
The HIV-1 gag protein fragment encoded by the p24 region and used as an antigenic target for antibody recognition.
Aliases: p24gag
- p55gag dna immunogen
A DNA vaccine construct encoding the HIV-1 p55gag protein and used as a comparator immunogen.
Aliases: p55gag DNA, p55gag
- toggle site
A single-amino-acid variable position within each conserved element used to accommodate sequence diversity.
REFERENCES
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