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Development of a Versatile, Near Full Genome Amplification and Sequencing Approach for a Broad Variety of HIV-1 Group M Variants

Near full genome sequencing (NFGS) of HIV-1 is required to assess the genetic composition of HIV-1 strains comprehensively. Population-wide, it enables a determination of the heterogeneity of HIV-1 and the emergence of novel/recombinant strains, while for each individual it constitutes a diagnostic...

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Autores principales: Banin, Andrew N., Tuen, Michael, Bimela, Jude S., Tongo, Marcel, Zappile, Paul, Khodadadi-Jamayran, Alireza, Nanfack, Aubin J., Meli, Josephine, Wang, Xiaohong, Mbanya, Dora, Ngogang, Jeanne, Heguy, Adriana, Nyambi, Phillipe N., Fokunang, Charles, Duerr, Ralf
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6520859/
https://www.ncbi.nlm.nih.gov/pubmed/30939815
http://dx.doi.org/10.3390/v11040317
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author Banin, Andrew N.
Tuen, Michael
Bimela, Jude S.
Tongo, Marcel
Zappile, Paul
Khodadadi-Jamayran, Alireza
Nanfack, Aubin J.
Meli, Josephine
Wang, Xiaohong
Mbanya, Dora
Ngogang, Jeanne
Heguy, Adriana
Nyambi, Phillipe N.
Fokunang, Charles
Duerr, Ralf
author_facet Banin, Andrew N.
Tuen, Michael
Bimela, Jude S.
Tongo, Marcel
Zappile, Paul
Khodadadi-Jamayran, Alireza
Nanfack, Aubin J.
Meli, Josephine
Wang, Xiaohong
Mbanya, Dora
Ngogang, Jeanne
Heguy, Adriana
Nyambi, Phillipe N.
Fokunang, Charles
Duerr, Ralf
author_sort Banin, Andrew N.
collection PubMed
description Near full genome sequencing (NFGS) of HIV-1 is required to assess the genetic composition of HIV-1 strains comprehensively. Population-wide, it enables a determination of the heterogeneity of HIV-1 and the emergence of novel/recombinant strains, while for each individual it constitutes a diagnostic instrument to assist targeted therapeutic measures against viral components. There is still a lack of robust and adaptable techniques for efficient NFGS from miscellaneous HIV-1 subtypes. Using rational primer design, a broad primer set was developed for the amplification and sequencing of diverse HIV-1 group M variants from plasma. Using pure subtypes as well as diverse, unique recombinant forms (URF), variable amplicon approaches were developed for NFGS comprising all functional genes. Twenty-three different genomes composed of subtypes A (A1), B, F (F2), G, CRF01_AE, CRF02_AG, and CRF22_01A1 were successfully determined. The NFGS approach was robust irrespective of viral loads (≥306 copies/mL) and amplification method. Third-generation sequencing (TGS), single genome amplification (SGA), cloning, and bulk sequencing yielded similar outcomes concerning subtype composition and recombinant breakpoint patterns. The introduction of a simple and versatile near full genome amplification, sequencing, and cloning method enables broad application in phylogenetic studies of diverse HIV-1 subtypes and can contribute to personalized HIV therapy and diagnosis.
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spelling pubmed-65208592019-06-03 Development of a Versatile, Near Full Genome Amplification and Sequencing Approach for a Broad Variety of HIV-1 Group M Variants Banin, Andrew N. Tuen, Michael Bimela, Jude S. Tongo, Marcel Zappile, Paul Khodadadi-Jamayran, Alireza Nanfack, Aubin J. Meli, Josephine Wang, Xiaohong Mbanya, Dora Ngogang, Jeanne Heguy, Adriana Nyambi, Phillipe N. Fokunang, Charles Duerr, Ralf Viruses Article Near full genome sequencing (NFGS) of HIV-1 is required to assess the genetic composition of HIV-1 strains comprehensively. Population-wide, it enables a determination of the heterogeneity of HIV-1 and the emergence of novel/recombinant strains, while for each individual it constitutes a diagnostic instrument to assist targeted therapeutic measures against viral components. There is still a lack of robust and adaptable techniques for efficient NFGS from miscellaneous HIV-1 subtypes. Using rational primer design, a broad primer set was developed for the amplification and sequencing of diverse HIV-1 group M variants from plasma. Using pure subtypes as well as diverse, unique recombinant forms (URF), variable amplicon approaches were developed for NFGS comprising all functional genes. Twenty-three different genomes composed of subtypes A (A1), B, F (F2), G, CRF01_AE, CRF02_AG, and CRF22_01A1 were successfully determined. The NFGS approach was robust irrespective of viral loads (≥306 copies/mL) and amplification method. Third-generation sequencing (TGS), single genome amplification (SGA), cloning, and bulk sequencing yielded similar outcomes concerning subtype composition and recombinant breakpoint patterns. The introduction of a simple and versatile near full genome amplification, sequencing, and cloning method enables broad application in phylogenetic studies of diverse HIV-1 subtypes and can contribute to personalized HIV therapy and diagnosis. MDPI 2019-04-01 /pmc/articles/PMC6520859/ /pubmed/30939815 http://dx.doi.org/10.3390/v11040317 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Banin, Andrew N.
Tuen, Michael
Bimela, Jude S.
Tongo, Marcel
Zappile, Paul
Khodadadi-Jamayran, Alireza
Nanfack, Aubin J.
Meli, Josephine
Wang, Xiaohong
Mbanya, Dora
Ngogang, Jeanne
Heguy, Adriana
Nyambi, Phillipe N.
Fokunang, Charles
Duerr, Ralf
Development of a Versatile, Near Full Genome Amplification and Sequencing Approach for a Broad Variety of HIV-1 Group M Variants
title Development of a Versatile, Near Full Genome Amplification and Sequencing Approach for a Broad Variety of HIV-1 Group M Variants
title_full Development of a Versatile, Near Full Genome Amplification and Sequencing Approach for a Broad Variety of HIV-1 Group M Variants
title_fullStr Development of a Versatile, Near Full Genome Amplification and Sequencing Approach for a Broad Variety of HIV-1 Group M Variants
title_full_unstemmed Development of a Versatile, Near Full Genome Amplification and Sequencing Approach for a Broad Variety of HIV-1 Group M Variants
title_short Development of a Versatile, Near Full Genome Amplification and Sequencing Approach for a Broad Variety of HIV-1 Group M Variants
title_sort development of a versatile, near full genome amplification and sequencing approach for a broad variety of hiv-1 group m variants
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6520859/
https://www.ncbi.nlm.nih.gov/pubmed/30939815
http://dx.doi.org/10.3390/v11040317
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