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HIV reservoirs are dominated by genetically younger and clonally enriched proviruses

In order to cure HIV, we need to better understand the within-host evolutionary origins of the small reservoir of genome-intact proviruses that persists within infected cells during antiretroviral therapy (ART). Most prior studies on reservoir evolutionary dynamics however did not discriminate genom...

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Autores principales: Kinloch, Natalie N., Shahid, Aniqa, Dong, Winnie, Kirkby, Don, Jones, Bradley R., Beelen, Charlotte J., MacMillan, Daniel, Lee, Guinevere Q., Mota, Talia M., Sudderuddin, Hanwei, Barad, Evan, Harris, Marianne, Brumme, Chanson J., Jones, R. Brad, Brockman, Mark A., Joy, Jeffrey B., Brumme, Zabrina L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10120704/
https://www.ncbi.nlm.nih.gov/pubmed/37090500
http://dx.doi.org/10.1101/2023.04.12.536611
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author Kinloch, Natalie N.
Shahid, Aniqa
Dong, Winnie
Kirkby, Don
Jones, Bradley R.
Beelen, Charlotte J.
MacMillan, Daniel
Lee, Guinevere Q.
Mota, Talia M.
Sudderuddin, Hanwei
Barad, Evan
Harris, Marianne
Brumme, Chanson J.
Jones, R. Brad
Brockman, Mark A.
Joy, Jeffrey B.
Brumme, Zabrina L.
author_facet Kinloch, Natalie N.
Shahid, Aniqa
Dong, Winnie
Kirkby, Don
Jones, Bradley R.
Beelen, Charlotte J.
MacMillan, Daniel
Lee, Guinevere Q.
Mota, Talia M.
Sudderuddin, Hanwei
Barad, Evan
Harris, Marianne
Brumme, Chanson J.
Jones, R. Brad
Brockman, Mark A.
Joy, Jeffrey B.
Brumme, Zabrina L.
author_sort Kinloch, Natalie N.
collection PubMed
description In order to cure HIV, we need to better understand the within-host evolutionary origins of the small reservoir of genome-intact proviruses that persists within infected cells during antiretroviral therapy (ART). Most prior studies on reservoir evolutionary dynamics however did not discriminate genome-intact proviruses from the vast background of defective ones. We reconstructed within-host pre-ART HIV evolutionary histories in six individuals and leveraged this information to infer the ages of intact and defective proviruses sampled after an average >9 years on ART, along with the ages of rebound and low-level/isolated viremia occurring during this time. We observed that the longest-lived proviruses persisting on ART were exclusively defective, usually due to large deletions. In contrast, intact proviruses and rebound HIV exclusively dated to the years immediately preceding ART. These observations are consistent with genome-intact proviruses having shorter lifespans, likely due to the cumulative risk of elimination following viral reactivation and protein production. Consistent with this, intact proviruses (and those with packaging signal defects) were three times more likely to be genetically identical compared to other proviral types, highlighting clonal expansion as particularly important in ensuring their survival. By contrast, low-level/isolated viremia sequences were genetically heterogeneous and sometimes ancestral, where viremia may have originated from defective proviruses. Results reveal that the HIV reservoir is dominated by clonally-enriched and genetically younger sequences that date to the untreated infection period when viral populations had been under within-host selection pressures for the longest duration. Knowledge of these qualities may help focus strategies for reservoir elimination.
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spelling pubmed-101207042023-04-22 HIV reservoirs are dominated by genetically younger and clonally enriched proviruses Kinloch, Natalie N. Shahid, Aniqa Dong, Winnie Kirkby, Don Jones, Bradley R. Beelen, Charlotte J. MacMillan, Daniel Lee, Guinevere Q. Mota, Talia M. Sudderuddin, Hanwei Barad, Evan Harris, Marianne Brumme, Chanson J. Jones, R. Brad Brockman, Mark A. Joy, Jeffrey B. Brumme, Zabrina L. bioRxiv Article In order to cure HIV, we need to better understand the within-host evolutionary origins of the small reservoir of genome-intact proviruses that persists within infected cells during antiretroviral therapy (ART). Most prior studies on reservoir evolutionary dynamics however did not discriminate genome-intact proviruses from the vast background of defective ones. We reconstructed within-host pre-ART HIV evolutionary histories in six individuals and leveraged this information to infer the ages of intact and defective proviruses sampled after an average >9 years on ART, along with the ages of rebound and low-level/isolated viremia occurring during this time. We observed that the longest-lived proviruses persisting on ART were exclusively defective, usually due to large deletions. In contrast, intact proviruses and rebound HIV exclusively dated to the years immediately preceding ART. These observations are consistent with genome-intact proviruses having shorter lifespans, likely due to the cumulative risk of elimination following viral reactivation and protein production. Consistent with this, intact proviruses (and those with packaging signal defects) were three times more likely to be genetically identical compared to other proviral types, highlighting clonal expansion as particularly important in ensuring their survival. By contrast, low-level/isolated viremia sequences were genetically heterogeneous and sometimes ancestral, where viremia may have originated from defective proviruses. Results reveal that the HIV reservoir is dominated by clonally-enriched and genetically younger sequences that date to the untreated infection period when viral populations had been under within-host selection pressures for the longest duration. Knowledge of these qualities may help focus strategies for reservoir elimination. Cold Spring Harbor Laboratory 2023-04-13 /pmc/articles/PMC10120704/ /pubmed/37090500 http://dx.doi.org/10.1101/2023.04.12.536611 Text en https://creativecommons.org/licenses/by-nc/4.0/This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License (https://creativecommons.org/licenses/by-nc/4.0/) , which allows reusers to distribute, remix, adapt, and build upon the material in any medium or format for noncommercial purposes only, and only so long as attribution is given to the creator.
spellingShingle Article
Kinloch, Natalie N.
Shahid, Aniqa
Dong, Winnie
Kirkby, Don
Jones, Bradley R.
Beelen, Charlotte J.
MacMillan, Daniel
Lee, Guinevere Q.
Mota, Talia M.
Sudderuddin, Hanwei
Barad, Evan
Harris, Marianne
Brumme, Chanson J.
Jones, R. Brad
Brockman, Mark A.
Joy, Jeffrey B.
Brumme, Zabrina L.
HIV reservoirs are dominated by genetically younger and clonally enriched proviruses
title HIV reservoirs are dominated by genetically younger and clonally enriched proviruses
title_full HIV reservoirs are dominated by genetically younger and clonally enriched proviruses
title_fullStr HIV reservoirs are dominated by genetically younger and clonally enriched proviruses
title_full_unstemmed HIV reservoirs are dominated by genetically younger and clonally enriched proviruses
title_short HIV reservoirs are dominated by genetically younger and clonally enriched proviruses
title_sort hiv reservoirs are dominated by genetically younger and clonally enriched proviruses
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10120704/
https://www.ncbi.nlm.nih.gov/pubmed/37090500
http://dx.doi.org/10.1101/2023.04.12.536611
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