Cargando…

Induction of Transient Virus Replication Facilitates Antigen-Independent Isolation of SIV-Specific Monoclonal Antibodies

Structural characterization of the HIV-1 Envelope (Env) glycoprotein has facilitated the development of Env probes to isolate HIV-specific monoclonal antibodies (mAbs). However, preclinical studies have largely evaluated these virus-specific mAbs against chimeric viruses, which do not naturally infe...

Descripción completa

Detalles Bibliográficos
Autores principales: Pedreño-Lopez, Nuria, Dang, Christine M., Rosen, Brandon C., Ricciardi, Michael J., Bailey, Varian K., Gutman, Martin J., Gonzalez-Nieto, Lucas, Pauthner, Matthias G., Le, Khoa, Song, Ge, Andrabi, Raiees, Weisgrau, Kim L., Pomplun, Nicholas, Martinez-Navio, José M., Fuchs, Sebastian P., Wrammert, Jens, Rakasz, Eva G., Lifson, Jeffrey D., Martins, Mauricio A., Burton, Dennis R., Watkins, David I., Magnani, Diogo M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society of Gene & Cell Therapy 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7021589/
https://www.ncbi.nlm.nih.gov/pubmed/32083148
http://dx.doi.org/10.1016/j.omtm.2020.01.010
_version_ 1783497902089306112
author Pedreño-Lopez, Nuria
Dang, Christine M.
Rosen, Brandon C.
Ricciardi, Michael J.
Bailey, Varian K.
Gutman, Martin J.
Gonzalez-Nieto, Lucas
Pauthner, Matthias G.
Le, Khoa
Song, Ge
Andrabi, Raiees
Weisgrau, Kim L.
Pomplun, Nicholas
Martinez-Navio, José M.
Fuchs, Sebastian P.
Wrammert, Jens
Rakasz, Eva G.
Lifson, Jeffrey D.
Martins, Mauricio A.
Burton, Dennis R.
Watkins, David I.
Magnani, Diogo M.
author_facet Pedreño-Lopez, Nuria
Dang, Christine M.
Rosen, Brandon C.
Ricciardi, Michael J.
Bailey, Varian K.
Gutman, Martin J.
Gonzalez-Nieto, Lucas
Pauthner, Matthias G.
Le, Khoa
Song, Ge
Andrabi, Raiees
Weisgrau, Kim L.
Pomplun, Nicholas
Martinez-Navio, José M.
Fuchs, Sebastian P.
Wrammert, Jens
Rakasz, Eva G.
Lifson, Jeffrey D.
Martins, Mauricio A.
Burton, Dennis R.
Watkins, David I.
Magnani, Diogo M.
author_sort Pedreño-Lopez, Nuria
collection PubMed
description Structural characterization of the HIV-1 Envelope (Env) glycoprotein has facilitated the development of Env probes to isolate HIV-specific monoclonal antibodies (mAbs). However, preclinical studies have largely evaluated these virus-specific mAbs against chimeric viruses, which do not naturally infect non-human primates, in contrast to the unconstrained simian immunodeficiency virus (SIV)mac239 clone. Given the paucity of native-like reagents for the isolation of SIV-specific B cells, we examined a method to isolate SIVmac239-specific mAbs without using Env probes. We first activated virus-specific B cells by inducing viral replication after the infusion of a CD8β-depleting mAb or withdrawal of antiretroviral therapy in SIVmac239-infected rhesus macaques. Following the rise in viremia, we observed 2- to 4-fold increases in the number of SIVmac239 Env-reactive plasmablasts in circulation. We then sorted these activated B cells and obtained 206 paired Ab sequences. After expressing 122 mAbs, we identified 14 Env-specific mAbs. While these Env-specific mAbs bound to both the SIVmac239 SOSIP.664 trimer and to infected primary rhesus CD4(+) T cells, five also neutralized SIVmac316. Unfortunately, none of these mAbs neutralized SIVmac239. Our data show that this method can be used to isolate virus-specific mAbs without antigenic probes by inducing bursts of contemporary replicating viruses in vivo.
format Online
Article
Text
id pubmed-7021589
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher American Society of Gene & Cell Therapy
record_format MEDLINE/PubMed
spelling pubmed-70215892020-02-20 Induction of Transient Virus Replication Facilitates Antigen-Independent Isolation of SIV-Specific Monoclonal Antibodies Pedreño-Lopez, Nuria Dang, Christine M. Rosen, Brandon C. Ricciardi, Michael J. Bailey, Varian K. Gutman, Martin J. Gonzalez-Nieto, Lucas Pauthner, Matthias G. Le, Khoa Song, Ge Andrabi, Raiees Weisgrau, Kim L. Pomplun, Nicholas Martinez-Navio, José M. Fuchs, Sebastian P. Wrammert, Jens Rakasz, Eva G. Lifson, Jeffrey D. Martins, Mauricio A. Burton, Dennis R. Watkins, David I. Magnani, Diogo M. Mol Ther Methods Clin Dev Article Structural characterization of the HIV-1 Envelope (Env) glycoprotein has facilitated the development of Env probes to isolate HIV-specific monoclonal antibodies (mAbs). However, preclinical studies have largely evaluated these virus-specific mAbs against chimeric viruses, which do not naturally infect non-human primates, in contrast to the unconstrained simian immunodeficiency virus (SIV)mac239 clone. Given the paucity of native-like reagents for the isolation of SIV-specific B cells, we examined a method to isolate SIVmac239-specific mAbs without using Env probes. We first activated virus-specific B cells by inducing viral replication after the infusion of a CD8β-depleting mAb or withdrawal of antiretroviral therapy in SIVmac239-infected rhesus macaques. Following the rise in viremia, we observed 2- to 4-fold increases in the number of SIVmac239 Env-reactive plasmablasts in circulation. We then sorted these activated B cells and obtained 206 paired Ab sequences. After expressing 122 mAbs, we identified 14 Env-specific mAbs. While these Env-specific mAbs bound to both the SIVmac239 SOSIP.664 trimer and to infected primary rhesus CD4(+) T cells, five also neutralized SIVmac316. Unfortunately, none of these mAbs neutralized SIVmac239. Our data show that this method can be used to isolate virus-specific mAbs without antigenic probes by inducing bursts of contemporary replicating viruses in vivo. American Society of Gene & Cell Therapy 2020-02-13 /pmc/articles/PMC7021589/ /pubmed/32083148 http://dx.doi.org/10.1016/j.omtm.2020.01.010 Text en © 2020 The Author(s) http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Pedreño-Lopez, Nuria
Dang, Christine M.
Rosen, Brandon C.
Ricciardi, Michael J.
Bailey, Varian K.
Gutman, Martin J.
Gonzalez-Nieto, Lucas
Pauthner, Matthias G.
Le, Khoa
Song, Ge
Andrabi, Raiees
Weisgrau, Kim L.
Pomplun, Nicholas
Martinez-Navio, José M.
Fuchs, Sebastian P.
Wrammert, Jens
Rakasz, Eva G.
Lifson, Jeffrey D.
Martins, Mauricio A.
Burton, Dennis R.
Watkins, David I.
Magnani, Diogo M.
Induction of Transient Virus Replication Facilitates Antigen-Independent Isolation of SIV-Specific Monoclonal Antibodies
title Induction of Transient Virus Replication Facilitates Antigen-Independent Isolation of SIV-Specific Monoclonal Antibodies
title_full Induction of Transient Virus Replication Facilitates Antigen-Independent Isolation of SIV-Specific Monoclonal Antibodies
title_fullStr Induction of Transient Virus Replication Facilitates Antigen-Independent Isolation of SIV-Specific Monoclonal Antibodies
title_full_unstemmed Induction of Transient Virus Replication Facilitates Antigen-Independent Isolation of SIV-Specific Monoclonal Antibodies
title_short Induction of Transient Virus Replication Facilitates Antigen-Independent Isolation of SIV-Specific Monoclonal Antibodies
title_sort induction of transient virus replication facilitates antigen-independent isolation of siv-specific monoclonal antibodies
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7021589/
https://www.ncbi.nlm.nih.gov/pubmed/32083148
http://dx.doi.org/10.1016/j.omtm.2020.01.010
work_keys_str_mv AT pedrenolopeznuria inductionoftransientvirusreplicationfacilitatesantigenindependentisolationofsivspecificmonoclonalantibodies
AT dangchristinem inductionoftransientvirusreplicationfacilitatesantigenindependentisolationofsivspecificmonoclonalantibodies
AT rosenbrandonc inductionoftransientvirusreplicationfacilitatesantigenindependentisolationofsivspecificmonoclonalantibodies
AT ricciardimichaelj inductionoftransientvirusreplicationfacilitatesantigenindependentisolationofsivspecificmonoclonalantibodies
AT baileyvariank inductionoftransientvirusreplicationfacilitatesantigenindependentisolationofsivspecificmonoclonalantibodies
AT gutmanmartinj inductionoftransientvirusreplicationfacilitatesantigenindependentisolationofsivspecificmonoclonalantibodies
AT gonzaleznietolucas inductionoftransientvirusreplicationfacilitatesantigenindependentisolationofsivspecificmonoclonalantibodies
AT pauthnermatthiasg inductionoftransientvirusreplicationfacilitatesantigenindependentisolationofsivspecificmonoclonalantibodies
AT lekhoa inductionoftransientvirusreplicationfacilitatesantigenindependentisolationofsivspecificmonoclonalantibodies
AT songge inductionoftransientvirusreplicationfacilitatesantigenindependentisolationofsivspecificmonoclonalantibodies
AT andrabiraiees inductionoftransientvirusreplicationfacilitatesantigenindependentisolationofsivspecificmonoclonalantibodies
AT weisgraukiml inductionoftransientvirusreplicationfacilitatesantigenindependentisolationofsivspecificmonoclonalantibodies
AT pomplunnicholas inductionoftransientvirusreplicationfacilitatesantigenindependentisolationofsivspecificmonoclonalantibodies
AT martineznaviojosem inductionoftransientvirusreplicationfacilitatesantigenindependentisolationofsivspecificmonoclonalantibodies
AT fuchssebastianp inductionoftransientvirusreplicationfacilitatesantigenindependentisolationofsivspecificmonoclonalantibodies
AT wrammertjens inductionoftransientvirusreplicationfacilitatesantigenindependentisolationofsivspecificmonoclonalantibodies
AT rakaszevag inductionoftransientvirusreplicationfacilitatesantigenindependentisolationofsivspecificmonoclonalantibodies
AT lifsonjeffreyd inductionoftransientvirusreplicationfacilitatesantigenindependentisolationofsivspecificmonoclonalantibodies
AT martinsmauricioa inductionoftransientvirusreplicationfacilitatesantigenindependentisolationofsivspecificmonoclonalantibodies
AT burtondennisr inductionoftransientvirusreplicationfacilitatesantigenindependentisolationofsivspecificmonoclonalantibodies
AT watkinsdavidi inductionoftransientvirusreplicationfacilitatesantigenindependentisolationofsivspecificmonoclonalantibodies
AT magnanidiogom inductionoftransientvirusreplicationfacilitatesantigenindependentisolationofsivspecificmonoclonalantibodies