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Rare HIV-1 transmitted/founder lineages identified by deep viral sequencing contribute to rapid shifts in dominant quasispecies during acute and early infection

In order to inform the rational design of HIV-1 preventive and cure interventions it is critical to understand the events occurring during acute HIV-1 infection (AHI). Using viral deep sequencing on six participants from the early capture acute infection RV217 cohort, we have studied HIV-1 evolution...

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Autores principales: Kijak, Gustavo H., Sanders-Buell, Eric, Chenine, Agnes-Laurence, Eller, Michael A., Goonetilleke, Nilu, Thomas, Rasmi, Leviyang, Sivan, Harbolick, Elizabeth A., Bose, Meera, Pham, Phuc, Oropeza, Celina, Poltavee, Kultida, O’Sullivan, Anne Marie, Billings, Erik, Merbah, Melanie, Costanzo, Margaret C., Warren, Joanna A., Slike, Bonnie, Li, Hui, Peachman, Kristina K., Fischer, Will, Gao, Feng, Cicala, Claudia, Arthos, James, Eller, Leigh A., O’Connell, Robert J., Sinei, Samuel, Maganga, Lucas, Kibuuka, Hannah, Nitayaphan, Sorachai, Rao, Mangala, Marovich, Mary A., Krebs, Shelly J., Rolland, Morgane, Korber, Bette T., Shaw, George M., Michael, Nelson L., Robb, Merlin L., Tovanabutra, Sodsai, Kim, Jerome H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5552316/
https://www.ncbi.nlm.nih.gov/pubmed/28759651
http://dx.doi.org/10.1371/journal.ppat.1006510
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author Kijak, Gustavo H.
Sanders-Buell, Eric
Chenine, Agnes-Laurence
Eller, Michael A.
Goonetilleke, Nilu
Thomas, Rasmi
Leviyang, Sivan
Harbolick, Elizabeth A.
Bose, Meera
Pham, Phuc
Oropeza, Celina
Poltavee, Kultida
O’Sullivan, Anne Marie
Billings, Erik
Merbah, Melanie
Costanzo, Margaret C.
Warren, Joanna A.
Slike, Bonnie
Li, Hui
Peachman, Kristina K.
Fischer, Will
Gao, Feng
Cicala, Claudia
Arthos, James
Eller, Leigh A.
O’Connell, Robert J.
Sinei, Samuel
Maganga, Lucas
Kibuuka, Hannah
Nitayaphan, Sorachai
Rao, Mangala
Marovich, Mary A.
Krebs, Shelly J.
Rolland, Morgane
Korber, Bette T.
Shaw, George M.
Michael, Nelson L.
Robb, Merlin L.
Tovanabutra, Sodsai
Kim, Jerome H.
author_facet Kijak, Gustavo H.
Sanders-Buell, Eric
Chenine, Agnes-Laurence
Eller, Michael A.
Goonetilleke, Nilu
Thomas, Rasmi
Leviyang, Sivan
Harbolick, Elizabeth A.
Bose, Meera
Pham, Phuc
Oropeza, Celina
Poltavee, Kultida
O’Sullivan, Anne Marie
Billings, Erik
Merbah, Melanie
Costanzo, Margaret C.
Warren, Joanna A.
Slike, Bonnie
Li, Hui
Peachman, Kristina K.
Fischer, Will
Gao, Feng
Cicala, Claudia
Arthos, James
Eller, Leigh A.
O’Connell, Robert J.
Sinei, Samuel
Maganga, Lucas
Kibuuka, Hannah
Nitayaphan, Sorachai
Rao, Mangala
Marovich, Mary A.
Krebs, Shelly J.
Rolland, Morgane
Korber, Bette T.
Shaw, George M.
Michael, Nelson L.
Robb, Merlin L.
Tovanabutra, Sodsai
Kim, Jerome H.
author_sort Kijak, Gustavo H.
collection PubMed
description In order to inform the rational design of HIV-1 preventive and cure interventions it is critical to understand the events occurring during acute HIV-1 infection (AHI). Using viral deep sequencing on six participants from the early capture acute infection RV217 cohort, we have studied HIV-1 evolution in plasma collected twice weekly during the first weeks following the advent of viremia. The analysis of infections established by multiple transmitted/founder (T/F) viruses revealed novel viral profiles that included: a) the low-level persistence of minor T/F variants, b) the rapid replacement of the major T/F by a minor T/F, and c) an initial expansion of the minor T/F followed by a quick collapse of the same minor T/F to low frequency. In most participants, cytotoxic T-lymphocyte (CTL) escape was first detected at the end of peak viremia downslope, proceeded at higher rates than previously measured in HIV-1 infection, and usually occurred through the exploration of multiple mutational pathways within an epitope. The rapid emergence of CTL escape variants suggests a strong and early CTL response. Minor T/F viral strains can contribute to rapid and varied profiles of HIV-1 quasispecies evolution during AHI. Overall, our results demonstrate that early, deep, and frequent sampling is needed to investigate viral/host interaction during AHI, which could help identify prerequisites for prevention and cure of HIV-1 infection.
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spelling pubmed-55523162017-08-25 Rare HIV-1 transmitted/founder lineages identified by deep viral sequencing contribute to rapid shifts in dominant quasispecies during acute and early infection Kijak, Gustavo H. Sanders-Buell, Eric Chenine, Agnes-Laurence Eller, Michael A. Goonetilleke, Nilu Thomas, Rasmi Leviyang, Sivan Harbolick, Elizabeth A. Bose, Meera Pham, Phuc Oropeza, Celina Poltavee, Kultida O’Sullivan, Anne Marie Billings, Erik Merbah, Melanie Costanzo, Margaret C. Warren, Joanna A. Slike, Bonnie Li, Hui Peachman, Kristina K. Fischer, Will Gao, Feng Cicala, Claudia Arthos, James Eller, Leigh A. O’Connell, Robert J. Sinei, Samuel Maganga, Lucas Kibuuka, Hannah Nitayaphan, Sorachai Rao, Mangala Marovich, Mary A. Krebs, Shelly J. Rolland, Morgane Korber, Bette T. Shaw, George M. Michael, Nelson L. Robb, Merlin L. Tovanabutra, Sodsai Kim, Jerome H. PLoS Pathog Research Article In order to inform the rational design of HIV-1 preventive and cure interventions it is critical to understand the events occurring during acute HIV-1 infection (AHI). Using viral deep sequencing on six participants from the early capture acute infection RV217 cohort, we have studied HIV-1 evolution in plasma collected twice weekly during the first weeks following the advent of viremia. The analysis of infections established by multiple transmitted/founder (T/F) viruses revealed novel viral profiles that included: a) the low-level persistence of minor T/F variants, b) the rapid replacement of the major T/F by a minor T/F, and c) an initial expansion of the minor T/F followed by a quick collapse of the same minor T/F to low frequency. In most participants, cytotoxic T-lymphocyte (CTL) escape was first detected at the end of peak viremia downslope, proceeded at higher rates than previously measured in HIV-1 infection, and usually occurred through the exploration of multiple mutational pathways within an epitope. The rapid emergence of CTL escape variants suggests a strong and early CTL response. Minor T/F viral strains can contribute to rapid and varied profiles of HIV-1 quasispecies evolution during AHI. Overall, our results demonstrate that early, deep, and frequent sampling is needed to investigate viral/host interaction during AHI, which could help identify prerequisites for prevention and cure of HIV-1 infection. Public Library of Science 2017-07-31 /pmc/articles/PMC5552316/ /pubmed/28759651 http://dx.doi.org/10.1371/journal.ppat.1006510 Text en https://creativecommons.org/publicdomain/zero/1.0/ This is an open access article, free of all copyright, and may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose. The work is made available under the Creative Commons CC0 (https://creativecommons.org/publicdomain/zero/1.0/) public domain dedication.
spellingShingle Research Article
Kijak, Gustavo H.
Sanders-Buell, Eric
Chenine, Agnes-Laurence
Eller, Michael A.
Goonetilleke, Nilu
Thomas, Rasmi
Leviyang, Sivan
Harbolick, Elizabeth A.
Bose, Meera
Pham, Phuc
Oropeza, Celina
Poltavee, Kultida
O’Sullivan, Anne Marie
Billings, Erik
Merbah, Melanie
Costanzo, Margaret C.
Warren, Joanna A.
Slike, Bonnie
Li, Hui
Peachman, Kristina K.
Fischer, Will
Gao, Feng
Cicala, Claudia
Arthos, James
Eller, Leigh A.
O’Connell, Robert J.
Sinei, Samuel
Maganga, Lucas
Kibuuka, Hannah
Nitayaphan, Sorachai
Rao, Mangala
Marovich, Mary A.
Krebs, Shelly J.
Rolland, Morgane
Korber, Bette T.
Shaw, George M.
Michael, Nelson L.
Robb, Merlin L.
Tovanabutra, Sodsai
Kim, Jerome H.
Rare HIV-1 transmitted/founder lineages identified by deep viral sequencing contribute to rapid shifts in dominant quasispecies during acute and early infection
title Rare HIV-1 transmitted/founder lineages identified by deep viral sequencing contribute to rapid shifts in dominant quasispecies during acute and early infection
title_full Rare HIV-1 transmitted/founder lineages identified by deep viral sequencing contribute to rapid shifts in dominant quasispecies during acute and early infection
title_fullStr Rare HIV-1 transmitted/founder lineages identified by deep viral sequencing contribute to rapid shifts in dominant quasispecies during acute and early infection
title_full_unstemmed Rare HIV-1 transmitted/founder lineages identified by deep viral sequencing contribute to rapid shifts in dominant quasispecies during acute and early infection
title_short Rare HIV-1 transmitted/founder lineages identified by deep viral sequencing contribute to rapid shifts in dominant quasispecies during acute and early infection
title_sort rare hiv-1 transmitted/founder lineages identified by deep viral sequencing contribute to rapid shifts in dominant quasispecies during acute and early infection
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5552316/
https://www.ncbi.nlm.nih.gov/pubmed/28759651
http://dx.doi.org/10.1371/journal.ppat.1006510
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