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HIV-PULSE: a long-read sequencing assay for high-throughput near full-length HIV-1 proviral genome characterization

A deep understanding of the composition of the HIV-1 reservoir is necessary for the development of targeted therapies and the evaluation of curative efforts. However, current near full-length (NFL) HIV-1 proviral genome sequencing assays are based on labor-intensive and costly principles of repeated...

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Autores principales: Lambrechts, Laurens, Bonine, Noah, Verstraeten, Rita, Pardons, Marion, Noppe, Ytse, Rutsaert, Sofie, Van Nieuwerburgh, Filip, Van Criekinge, Wim, Cole, Basiel, Vandekerckhove, Linos
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10639044/
https://www.ncbi.nlm.nih.gov/pubmed/37819007
http://dx.doi.org/10.1093/nar/gkad790
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author Lambrechts, Laurens
Bonine, Noah
Verstraeten, Rita
Pardons, Marion
Noppe, Ytse
Rutsaert, Sofie
Van Nieuwerburgh, Filip
Van Criekinge, Wim
Cole, Basiel
Vandekerckhove, Linos
author_facet Lambrechts, Laurens
Bonine, Noah
Verstraeten, Rita
Pardons, Marion
Noppe, Ytse
Rutsaert, Sofie
Van Nieuwerburgh, Filip
Van Criekinge, Wim
Cole, Basiel
Vandekerckhove, Linos
author_sort Lambrechts, Laurens
collection PubMed
description A deep understanding of the composition of the HIV-1 reservoir is necessary for the development of targeted therapies and the evaluation of curative efforts. However, current near full-length (NFL) HIV-1 proviral genome sequencing assays are based on labor-intensive and costly principles of repeated PCRs at limiting dilution, restricting their scalability. To address this, we developed a high-throughput, long-read sequencing assay called HIV-PULSE (HIV Proviral UMI-mediated Long-read Sequencing). This assay uses unique molecular identifiers (UMIs) to tag individual HIV-1 genomes, allowing for the omission of the limiting dilution step and enabling long-range PCR amplification of many NFL genomes in a single PCR reaction, while simultaneously overcoming poor single-read accuracy. We optimized the assay using HIV-infected cell lines and then applied it to blood samples from 18 individuals living with HIV on antiretroviral therapy, yielding a total of 1308 distinct HIV-1 genomes. Benchmarking against the widely applied Full-Length Individual Proviral Sequencing assay revealed similar sensitivity (11 vs 18%) and overall good concordance, although at a significantly higher throughput. In conclusion, HIV-PULSE is a cost-efficient and scalable assay that allows for the characterization of the HIV-1 proviral landscape, making it an attractive method to study the HIV-1 reservoir composition and dynamics.
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spelling pubmed-106390442023-11-15 HIV-PULSE: a long-read sequencing assay for high-throughput near full-length HIV-1 proviral genome characterization Lambrechts, Laurens Bonine, Noah Verstraeten, Rita Pardons, Marion Noppe, Ytse Rutsaert, Sofie Van Nieuwerburgh, Filip Van Criekinge, Wim Cole, Basiel Vandekerckhove, Linos Nucleic Acids Res Methods A deep understanding of the composition of the HIV-1 reservoir is necessary for the development of targeted therapies and the evaluation of curative efforts. However, current near full-length (NFL) HIV-1 proviral genome sequencing assays are based on labor-intensive and costly principles of repeated PCRs at limiting dilution, restricting their scalability. To address this, we developed a high-throughput, long-read sequencing assay called HIV-PULSE (HIV Proviral UMI-mediated Long-read Sequencing). This assay uses unique molecular identifiers (UMIs) to tag individual HIV-1 genomes, allowing for the omission of the limiting dilution step and enabling long-range PCR amplification of many NFL genomes in a single PCR reaction, while simultaneously overcoming poor single-read accuracy. We optimized the assay using HIV-infected cell lines and then applied it to blood samples from 18 individuals living with HIV on antiretroviral therapy, yielding a total of 1308 distinct HIV-1 genomes. Benchmarking against the widely applied Full-Length Individual Proviral Sequencing assay revealed similar sensitivity (11 vs 18%) and overall good concordance, although at a significantly higher throughput. In conclusion, HIV-PULSE is a cost-efficient and scalable assay that allows for the characterization of the HIV-1 proviral landscape, making it an attractive method to study the HIV-1 reservoir composition and dynamics. Oxford University Press 2023-10-11 /pmc/articles/PMC10639044/ /pubmed/37819007 http://dx.doi.org/10.1093/nar/gkad790 Text en © The Author(s) 2023. Published by Oxford University Press on behalf of Nucleic Acids Research. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Methods
Lambrechts, Laurens
Bonine, Noah
Verstraeten, Rita
Pardons, Marion
Noppe, Ytse
Rutsaert, Sofie
Van Nieuwerburgh, Filip
Van Criekinge, Wim
Cole, Basiel
Vandekerckhove, Linos
HIV-PULSE: a long-read sequencing assay for high-throughput near full-length HIV-1 proviral genome characterization
title HIV-PULSE: a long-read sequencing assay for high-throughput near full-length HIV-1 proviral genome characterization
title_full HIV-PULSE: a long-read sequencing assay for high-throughput near full-length HIV-1 proviral genome characterization
title_fullStr HIV-PULSE: a long-read sequencing assay for high-throughput near full-length HIV-1 proviral genome characterization
title_full_unstemmed HIV-PULSE: a long-read sequencing assay for high-throughput near full-length HIV-1 proviral genome characterization
title_short HIV-PULSE: a long-read sequencing assay for high-throughput near full-length HIV-1 proviral genome characterization
title_sort hiv-pulse: a long-read sequencing assay for high-throughput near full-length hiv-1 proviral genome characterization
topic Methods
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10639044/
https://www.ncbi.nlm.nih.gov/pubmed/37819007
http://dx.doi.org/10.1093/nar/gkad790
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