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APOBEC3 proteins can copackage and comutate HIV-1 genomes

Although APOBEC3 cytidine deaminases A3G, A3F, A3D and A3H are packaged into virions and inhibit viral replication by inducing G-to-A hypermutation, it is not known whether they are copackaged and whether they can act additively or synergistically to inhibit HIV-1 replication. Here, we showed that A...

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Autores principales: Desimmie, Belete A., Burdick, Ryan C., Izumi, Taisuke, Doi, Hibiki, Shao, Wei, Alvord, W. Gregory, Sato, Kei, Koyanagi, Yoshio, Jones, Sara, Wilson, Eleanor, Hill, Shawn, Maldarelli, Frank, Hu, Wei-Shau, Pathak, Vinay K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5027510/
https://www.ncbi.nlm.nih.gov/pubmed/27439715
http://dx.doi.org/10.1093/nar/gkw653
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author Desimmie, Belete A.
Burdick, Ryan C.
Izumi, Taisuke
Doi, Hibiki
Shao, Wei
Alvord, W. Gregory
Sato, Kei
Koyanagi, Yoshio
Jones, Sara
Wilson, Eleanor
Hill, Shawn
Maldarelli, Frank
Hu, Wei-Shau
Pathak, Vinay K.
author_facet Desimmie, Belete A.
Burdick, Ryan C.
Izumi, Taisuke
Doi, Hibiki
Shao, Wei
Alvord, W. Gregory
Sato, Kei
Koyanagi, Yoshio
Jones, Sara
Wilson, Eleanor
Hill, Shawn
Maldarelli, Frank
Hu, Wei-Shau
Pathak, Vinay K.
author_sort Desimmie, Belete A.
collection PubMed
description Although APOBEC3 cytidine deaminases A3G, A3F, A3D and A3H are packaged into virions and inhibit viral replication by inducing G-to-A hypermutation, it is not known whether they are copackaged and whether they can act additively or synergistically to inhibit HIV-1 replication. Here, we showed that APOBEC3 proteins can be copackaged by visualization of fluorescently-tagged APOBEC3 proteins using single-virion fluorescence microscopy. We further determined that viruses produced in the presence of A3G + A3F and A3G + A3H, exhibited extensive comutation of viral cDNA, as determined by the frequency of G-to-A mutations in the proviral genomes in the contexts of A3G (GG-to-AG) and A3D, A3F or A3H (GA-to-AA) edited sites. The copackaging of A3G + A3F and A3G + A3H resulted in an additive increase and a modest synergistic increase (1.8-fold) in the frequency of GA-to-AA mutations, respectively. We also identified distinct editing site trinucleotide sequence contexts for each APOBEC3 protein and used them to show that hypermutation of proviral DNAs from seven patients was induced by A3G, A3F (or A3H), A3D and A3G + A3F (or A3H). These results indicate that APOBEC3 proteins can be copackaged and can comutate the same genomes, and can cooperate to inhibit HIV replication.
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spelling pubmed-50275102016-09-21 APOBEC3 proteins can copackage and comutate HIV-1 genomes Desimmie, Belete A. Burdick, Ryan C. Izumi, Taisuke Doi, Hibiki Shao, Wei Alvord, W. Gregory Sato, Kei Koyanagi, Yoshio Jones, Sara Wilson, Eleanor Hill, Shawn Maldarelli, Frank Hu, Wei-Shau Pathak, Vinay K. Nucleic Acids Res Nucleic Acid Enzymes Although APOBEC3 cytidine deaminases A3G, A3F, A3D and A3H are packaged into virions and inhibit viral replication by inducing G-to-A hypermutation, it is not known whether they are copackaged and whether they can act additively or synergistically to inhibit HIV-1 replication. Here, we showed that APOBEC3 proteins can be copackaged by visualization of fluorescently-tagged APOBEC3 proteins using single-virion fluorescence microscopy. We further determined that viruses produced in the presence of A3G + A3F and A3G + A3H, exhibited extensive comutation of viral cDNA, as determined by the frequency of G-to-A mutations in the proviral genomes in the contexts of A3G (GG-to-AG) and A3D, A3F or A3H (GA-to-AA) edited sites. The copackaging of A3G + A3F and A3G + A3H resulted in an additive increase and a modest synergistic increase (1.8-fold) in the frequency of GA-to-AA mutations, respectively. We also identified distinct editing site trinucleotide sequence contexts for each APOBEC3 protein and used them to show that hypermutation of proviral DNAs from seven patients was induced by A3G, A3F (or A3H), A3D and A3G + A3F (or A3H). These results indicate that APOBEC3 proteins can be copackaged and can comutate the same genomes, and can cooperate to inhibit HIV replication. Oxford University Press 2016-09-19 2016-07-20 /pmc/articles/PMC5027510/ /pubmed/27439715 http://dx.doi.org/10.1093/nar/gkw653 Text en Published by Oxford University Press on behalf of Nucleic Acids Research 2016. This work is written by (a) US Government employee(s) and is in the public domain in the US.
spellingShingle Nucleic Acid Enzymes
Desimmie, Belete A.
Burdick, Ryan C.
Izumi, Taisuke
Doi, Hibiki
Shao, Wei
Alvord, W. Gregory
Sato, Kei
Koyanagi, Yoshio
Jones, Sara
Wilson, Eleanor
Hill, Shawn
Maldarelli, Frank
Hu, Wei-Shau
Pathak, Vinay K.
APOBEC3 proteins can copackage and comutate HIV-1 genomes
title APOBEC3 proteins can copackage and comutate HIV-1 genomes
title_full APOBEC3 proteins can copackage and comutate HIV-1 genomes
title_fullStr APOBEC3 proteins can copackage and comutate HIV-1 genomes
title_full_unstemmed APOBEC3 proteins can copackage and comutate HIV-1 genomes
title_short APOBEC3 proteins can copackage and comutate HIV-1 genomes
title_sort apobec3 proteins can copackage and comutate hiv-1 genomes
topic Nucleic Acid Enzymes
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5027510/
https://www.ncbi.nlm.nih.gov/pubmed/27439715
http://dx.doi.org/10.1093/nar/gkw653
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