Cargando…

Gag and env conserved element CE DNA vaccines elicit broad cytotoxic T cell responses targeting subdominant epitopes of HIV and SIV Able to recognize virus-infected cells in macaques

HIV sequence diversity and the propensity of eliciting immunodominant responses targeting inessential variable regions are hurdles in the development of an effective AIDS vaccine. We developed a DNA vaccine comprising conserved elements (CE) of SIV p27(Gag) and HIV-1 Env and found that priming vacci...

Descripción completa

Detalles Bibliográficos
Autores principales: Hu, Xintao, Lu, Zhongyan, Valentin, Antonio, Rosati, Margherita, Broderick, Kate E., Sardesai, Niranjan Y., Marx, Preston A., Mullins, James I., Pavlakis, George N., Felber, Barbara K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Taylor & Francis 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6183272/
https://www.ncbi.nlm.nih.gov/pubmed/29939820
http://dx.doi.org/10.1080/21645515.2018.1489949
_version_ 1783362695186087936
author Hu, Xintao
Lu, Zhongyan
Valentin, Antonio
Rosati, Margherita
Broderick, Kate E.
Sardesai, Niranjan Y.
Marx, Preston A.
Mullins, James I.
Pavlakis, George N.
Felber, Barbara K.
author_facet Hu, Xintao
Lu, Zhongyan
Valentin, Antonio
Rosati, Margherita
Broderick, Kate E.
Sardesai, Niranjan Y.
Marx, Preston A.
Mullins, James I.
Pavlakis, George N.
Felber, Barbara K.
author_sort Hu, Xintao
collection PubMed
description HIV sequence diversity and the propensity of eliciting immunodominant responses targeting inessential variable regions are hurdles in the development of an effective AIDS vaccine. We developed a DNA vaccine comprising conserved elements (CE) of SIV p27(Gag) and HIV-1 Env and found that priming vaccination with CE DNA is critical to efficiently overcome the dominance imposed by Gag and Env variable regions. Here, we show that DNA vaccinated macaques receiving the CE prime/CE+full-length DNA co-delivery booster vaccine regimens developed broad, potent and durable cytotoxic T cell responses targeting conserved protein segments of SIV Gag and HIV Env. Gag CE-specific T cells showed robust anamnestic responses upon infection with SIV(mac239) which led to the identification of CE-specific cytotoxic lymphocytes able to recognize epitopes covering distinct CE on the surface of SIV infected cells in vivo. Though not controlling infection overall, we found an inverse correlation between Gag CE-specific CD8(+) T cell responses and peak viremia. The T cell responses induced by the HIV Env CE immunogen were recalled in some animals upon SIV infection, leading to the identification of two cross-reactive epitopes between HIV and SIV Env based in sequence homology. These data demonstrate that a vaccine combining Gag and Env CE DNA subverted the normal immunodominance patterns, eliciting immune responses that included subdominant, highly conserved epitopes. These vaccine regimens augment cytotoxic T cell responses to highly conserved epitopes in the viral proteome and maximize response breadth. The vaccine-induced CE-specific T cells were expanded upon SIV infection, indicating that the predicted CE epitopes incorporated in the DNA vaccine are processed and exposed by infected cells in their natural context within the viral proteome.
format Online
Article
Text
id pubmed-6183272
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher Taylor & Francis
record_format MEDLINE/PubMed
spelling pubmed-61832722018-10-19 Gag and env conserved element CE DNA vaccines elicit broad cytotoxic T cell responses targeting subdominant epitopes of HIV and SIV Able to recognize virus-infected cells in macaques Hu, Xintao Lu, Zhongyan Valentin, Antonio Rosati, Margherita Broderick, Kate E. Sardesai, Niranjan Y. Marx, Preston A. Mullins, James I. Pavlakis, George N. Felber, Barbara K. Hum Vaccin Immunother Research Paper HIV sequence diversity and the propensity of eliciting immunodominant responses targeting inessential variable regions are hurdles in the development of an effective AIDS vaccine. We developed a DNA vaccine comprising conserved elements (CE) of SIV p27(Gag) and HIV-1 Env and found that priming vaccination with CE DNA is critical to efficiently overcome the dominance imposed by Gag and Env variable regions. Here, we show that DNA vaccinated macaques receiving the CE prime/CE+full-length DNA co-delivery booster vaccine regimens developed broad, potent and durable cytotoxic T cell responses targeting conserved protein segments of SIV Gag and HIV Env. Gag CE-specific T cells showed robust anamnestic responses upon infection with SIV(mac239) which led to the identification of CE-specific cytotoxic lymphocytes able to recognize epitopes covering distinct CE on the surface of SIV infected cells in vivo. Though not controlling infection overall, we found an inverse correlation between Gag CE-specific CD8(+) T cell responses and peak viremia. The T cell responses induced by the HIV Env CE immunogen were recalled in some animals upon SIV infection, leading to the identification of two cross-reactive epitopes between HIV and SIV Env based in sequence homology. These data demonstrate that a vaccine combining Gag and Env CE DNA subverted the normal immunodominance patterns, eliciting immune responses that included subdominant, highly conserved epitopes. These vaccine regimens augment cytotoxic T cell responses to highly conserved epitopes in the viral proteome and maximize response breadth. The vaccine-induced CE-specific T cells were expanded upon SIV infection, indicating that the predicted CE epitopes incorporated in the DNA vaccine are processed and exposed by infected cells in their natural context within the viral proteome. Taylor & Francis 2018-07-12 /pmc/articles/PMC6183272/ /pubmed/29939820 http://dx.doi.org/10.1080/21645515.2018.1489949 Text en This article not subject to US copyright laws. http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivatives License (http://creativecommons.org/licenses/by-nc-nd/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited, and is not altered, transformed, or built upon in any way.
spellingShingle Research Paper
Hu, Xintao
Lu, Zhongyan
Valentin, Antonio
Rosati, Margherita
Broderick, Kate E.
Sardesai, Niranjan Y.
Marx, Preston A.
Mullins, James I.
Pavlakis, George N.
Felber, Barbara K.
Gag and env conserved element CE DNA vaccines elicit broad cytotoxic T cell responses targeting subdominant epitopes of HIV and SIV Able to recognize virus-infected cells in macaques
title Gag and env conserved element CE DNA vaccines elicit broad cytotoxic T cell responses targeting subdominant epitopes of HIV and SIV Able to recognize virus-infected cells in macaques
title_full Gag and env conserved element CE DNA vaccines elicit broad cytotoxic T cell responses targeting subdominant epitopes of HIV and SIV Able to recognize virus-infected cells in macaques
title_fullStr Gag and env conserved element CE DNA vaccines elicit broad cytotoxic T cell responses targeting subdominant epitopes of HIV and SIV Able to recognize virus-infected cells in macaques
title_full_unstemmed Gag and env conserved element CE DNA vaccines elicit broad cytotoxic T cell responses targeting subdominant epitopes of HIV and SIV Able to recognize virus-infected cells in macaques
title_short Gag and env conserved element CE DNA vaccines elicit broad cytotoxic T cell responses targeting subdominant epitopes of HIV and SIV Able to recognize virus-infected cells in macaques
title_sort gag and env conserved element ce dna vaccines elicit broad cytotoxic t cell responses targeting subdominant epitopes of hiv and siv able to recognize virus-infected cells in macaques
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6183272/
https://www.ncbi.nlm.nih.gov/pubmed/29939820
http://dx.doi.org/10.1080/21645515.2018.1489949
work_keys_str_mv AT huxintao gagandenvconservedelementcednavaccineselicitbroadcytotoxictcellresponsestargetingsubdominantepitopesofhivandsivabletorecognizevirusinfectedcellsinmacaques
AT luzhongyan gagandenvconservedelementcednavaccineselicitbroadcytotoxictcellresponsestargetingsubdominantepitopesofhivandsivabletorecognizevirusinfectedcellsinmacaques
AT valentinantonio gagandenvconservedelementcednavaccineselicitbroadcytotoxictcellresponsestargetingsubdominantepitopesofhivandsivabletorecognizevirusinfectedcellsinmacaques
AT rosatimargherita gagandenvconservedelementcednavaccineselicitbroadcytotoxictcellresponsestargetingsubdominantepitopesofhivandsivabletorecognizevirusinfectedcellsinmacaques
AT broderickkatee gagandenvconservedelementcednavaccineselicitbroadcytotoxictcellresponsestargetingsubdominantepitopesofhivandsivabletorecognizevirusinfectedcellsinmacaques
AT sardesainiranjany gagandenvconservedelementcednavaccineselicitbroadcytotoxictcellresponsestargetingsubdominantepitopesofhivandsivabletorecognizevirusinfectedcellsinmacaques
AT marxprestona gagandenvconservedelementcednavaccineselicitbroadcytotoxictcellresponsestargetingsubdominantepitopesofhivandsivabletorecognizevirusinfectedcellsinmacaques
AT mullinsjamesi gagandenvconservedelementcednavaccineselicitbroadcytotoxictcellresponsestargetingsubdominantepitopesofhivandsivabletorecognizevirusinfectedcellsinmacaques
AT pavlakisgeorgen gagandenvconservedelementcednavaccineselicitbroadcytotoxictcellresponsestargetingsubdominantepitopesofhivandsivabletorecognizevirusinfectedcellsinmacaques
AT felberbarbarak gagandenvconservedelementcednavaccineselicitbroadcytotoxictcellresponsestargetingsubdominantepitopesofhivandsivabletorecognizevirusinfectedcellsinmacaques