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BET-Independent Murine Leukemia Virus Integration Is Retargeted In Vivo and Selects Distinct Genomic Elements for Lymphomagenesis

Moloney murine leukemia virus (MLV) infects BALB/c mice and induces T-cell lymphoma in mice. Retroviral integration is mediated by the interaction of the MLV integrase (IN) with members of the bromodomain and extraterminal motif (BET) protein family (BRD2, BRD3, and BRD4). The introduction of the W3...

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Autores principales: Nombela, Ivan, Michiels, Martine, Van Looveren, Dominique, Marcelis, Lukas, el Ashkar, Sara, Van Belle, Siska, Bruggemans, Anne, Tousseyn, Thomas, Schwaller, Jürg, Christ, Frauke, Gijsbers, Rik, De Rijck, Jan, Debyser, Zeger
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9431007/
https://www.ncbi.nlm.nih.gov/pubmed/35852337
http://dx.doi.org/10.1128/spectrum.01478-22
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author Nombela, Ivan
Michiels, Martine
Van Looveren, Dominique
Marcelis, Lukas
el Ashkar, Sara
Van Belle, Siska
Bruggemans, Anne
Tousseyn, Thomas
Schwaller, Jürg
Christ, Frauke
Gijsbers, Rik
De Rijck, Jan
Debyser, Zeger
author_facet Nombela, Ivan
Michiels, Martine
Van Looveren, Dominique
Marcelis, Lukas
el Ashkar, Sara
Van Belle, Siska
Bruggemans, Anne
Tousseyn, Thomas
Schwaller, Jürg
Christ, Frauke
Gijsbers, Rik
De Rijck, Jan
Debyser, Zeger
author_sort Nombela, Ivan
collection PubMed
description Moloney murine leukemia virus (MLV) infects BALB/c mice and induces T-cell lymphoma in mice. Retroviral integration is mediated by the interaction of the MLV integrase (IN) with members of the bromodomain and extraterminal motif (BET) protein family (BRD2, BRD3, and BRD4). The introduction of the W390A mutation into MLV IN abolishes the BET interaction. Here, we compared the replication of W390A MLV to that of wild-type (WT) MLV in adult BALB/c mice to study the role of BET proteins in replication, integration, and tumorigenesis in vivo. Comparing WT and W390A MLV infections revealed similar viral loads in the blood, thymus, and spleen cells. Interestingly, W390A MLV integration was retargeted away from GC-enriched genomic regions. However, both WT MLV- and W390A MLV-infected mice developed T-cell lymphoma after similar latencies represented by an enlarged thymus and spleen and multiorgan tumor infiltration. Integration site sequencing from splenic tumor cells revealed clonal expansion in all WT MLV- and W390A MLV-infected mice. However, the integration profiles of W390A MLV and WT MLV differed significantly. Integrations were enriched in enhancers and promoters, but compared to the WT, W390A MLV integrated less frequently into enhancers and more frequently into oncogene bodies such as Notch1 and Ppp1r16b. We conclude that host factors direct MLV in vivo integration site selection. Although BET proteins target WT MLV integration preferentially toward enhancers and promoters, insertional lymphomagenesis can occur independently from BET, likely due to the intrinsically strong enhancer/promoter of the MLV long terminal repeat (LTR). IMPORTANCE In this study, we have shown that the in vivo replication of murine leukemia virus happens independently of BET proteins, which are key host determinants involved in retroviral integration site selection. This finding opens a new research line in the discovery of alternative viral or host factors that may complement the dominant host factor. In addition, our results show that BET-independent murine leukemia virus uncouples insertional mutagenesis from gene enhancers, although lymphomagenesis still occurs despite the lack of an interaction with BET proteins. Our findings also have implications for the engineering of BET-independent MLV-based vectors for gene therapy, which may not be a safe alternative.
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spelling pubmed-94310072022-09-01 BET-Independent Murine Leukemia Virus Integration Is Retargeted In Vivo and Selects Distinct Genomic Elements for Lymphomagenesis Nombela, Ivan Michiels, Martine Van Looveren, Dominique Marcelis, Lukas el Ashkar, Sara Van Belle, Siska Bruggemans, Anne Tousseyn, Thomas Schwaller, Jürg Christ, Frauke Gijsbers, Rik De Rijck, Jan Debyser, Zeger Microbiol Spectr Research Article Moloney murine leukemia virus (MLV) infects BALB/c mice and induces T-cell lymphoma in mice. Retroviral integration is mediated by the interaction of the MLV integrase (IN) with members of the bromodomain and extraterminal motif (BET) protein family (BRD2, BRD3, and BRD4). The introduction of the W390A mutation into MLV IN abolishes the BET interaction. Here, we compared the replication of W390A MLV to that of wild-type (WT) MLV in adult BALB/c mice to study the role of BET proteins in replication, integration, and tumorigenesis in vivo. Comparing WT and W390A MLV infections revealed similar viral loads in the blood, thymus, and spleen cells. Interestingly, W390A MLV integration was retargeted away from GC-enriched genomic regions. However, both WT MLV- and W390A MLV-infected mice developed T-cell lymphoma after similar latencies represented by an enlarged thymus and spleen and multiorgan tumor infiltration. Integration site sequencing from splenic tumor cells revealed clonal expansion in all WT MLV- and W390A MLV-infected mice. However, the integration profiles of W390A MLV and WT MLV differed significantly. Integrations were enriched in enhancers and promoters, but compared to the WT, W390A MLV integrated less frequently into enhancers and more frequently into oncogene bodies such as Notch1 and Ppp1r16b. We conclude that host factors direct MLV in vivo integration site selection. Although BET proteins target WT MLV integration preferentially toward enhancers and promoters, insertional lymphomagenesis can occur independently from BET, likely due to the intrinsically strong enhancer/promoter of the MLV long terminal repeat (LTR). IMPORTANCE In this study, we have shown that the in vivo replication of murine leukemia virus happens independently of BET proteins, which are key host determinants involved in retroviral integration site selection. This finding opens a new research line in the discovery of alternative viral or host factors that may complement the dominant host factor. In addition, our results show that BET-independent murine leukemia virus uncouples insertional mutagenesis from gene enhancers, although lymphomagenesis still occurs despite the lack of an interaction with BET proteins. Our findings also have implications for the engineering of BET-independent MLV-based vectors for gene therapy, which may not be a safe alternative. American Society for Microbiology 2022-07-19 /pmc/articles/PMC9431007/ /pubmed/35852337 http://dx.doi.org/10.1128/spectrum.01478-22 Text en Copyright © 2022 Nombela et al. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Nombela, Ivan
Michiels, Martine
Van Looveren, Dominique
Marcelis, Lukas
el Ashkar, Sara
Van Belle, Siska
Bruggemans, Anne
Tousseyn, Thomas
Schwaller, Jürg
Christ, Frauke
Gijsbers, Rik
De Rijck, Jan
Debyser, Zeger
BET-Independent Murine Leukemia Virus Integration Is Retargeted In Vivo and Selects Distinct Genomic Elements for Lymphomagenesis
title BET-Independent Murine Leukemia Virus Integration Is Retargeted In Vivo and Selects Distinct Genomic Elements for Lymphomagenesis
title_full BET-Independent Murine Leukemia Virus Integration Is Retargeted In Vivo and Selects Distinct Genomic Elements for Lymphomagenesis
title_fullStr BET-Independent Murine Leukemia Virus Integration Is Retargeted In Vivo and Selects Distinct Genomic Elements for Lymphomagenesis
title_full_unstemmed BET-Independent Murine Leukemia Virus Integration Is Retargeted In Vivo and Selects Distinct Genomic Elements for Lymphomagenesis
title_short BET-Independent Murine Leukemia Virus Integration Is Retargeted In Vivo and Selects Distinct Genomic Elements for Lymphomagenesis
title_sort bet-independent murine leukemia virus integration is retargeted in vivo and selects distinct genomic elements for lymphomagenesis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9431007/
https://www.ncbi.nlm.nih.gov/pubmed/35852337
http://dx.doi.org/10.1128/spectrum.01478-22
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