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Vpx is Critical for SIVmne infection of pigtail macaques

BACKGROUND: Viral protein X (Vpx) of SIV has been reported to be important for establishing infection in vivo. Vpx has several different activities in vitro, promoting preintegration complex import into the nucleus in quiescent lymphocytes and overcoming a block in reverse transcription in macrophag...

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Autores principales: Belshan, Michael, Kimata, Jason T, Brown, Charles, Cheng, Xiaogang, McCulley, Anna, Larsen, Alison, Thippeshappa, Rajesh, Hodara, Vida, Giavedoni, Luis, Hirsch, Vanessa, Ratner, Lee
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3353869/
https://www.ncbi.nlm.nih.gov/pubmed/22531456
http://dx.doi.org/10.1186/1742-4690-9-32
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author Belshan, Michael
Kimata, Jason T
Brown, Charles
Cheng, Xiaogang
McCulley, Anna
Larsen, Alison
Thippeshappa, Rajesh
Hodara, Vida
Giavedoni, Luis
Hirsch, Vanessa
Ratner, Lee
author_facet Belshan, Michael
Kimata, Jason T
Brown, Charles
Cheng, Xiaogang
McCulley, Anna
Larsen, Alison
Thippeshappa, Rajesh
Hodara, Vida
Giavedoni, Luis
Hirsch, Vanessa
Ratner, Lee
author_sort Belshan, Michael
collection PubMed
description BACKGROUND: Viral protein X (Vpx) of SIV has been reported to be important for establishing infection in vivo. Vpx has several different activities in vitro, promoting preintegration complex import into the nucleus in quiescent lymphocytes and overcoming a block in reverse transcription in macrophages. Vpx interacts with the DDB1-CUL4-DCAF1 E3 ligase complex, which may or may not be required for the ascribed functions. The goal of the current study was to determine whether these activities of Vpx are important in vivo. RESULTS: An infectious, pathogenic clone of SIVmne was used to examine correlations between Vpx functions in vitro and in vivo. Three previously described HIV-2 Vpx mutants that were shown to be important for nuclear import of the preintegration complex in quiescent lymphocytes were constructed in SIVmne: A vpx-deleted virus, a truncation of Vpx at amino acid 102 that deletes the C-terminal proline-rich domain (X(102)), and a mutant with tyrosines 66, 69, and 71 changed to alanine (X(y-a)). All mutant viruses replicated similarly to wild type SIVmne027 in primary pigtail macaque PBMCs, and were only slightly retarded in CEMx174 cells. However, all the vpx mutant viruses were defective for replication in both human and pigtail monocyte-derived macrophages. PCR assays demonstrated that the efficiency of reverse transcription and the levels of viral integration in macrophages were substantially reduced for the vpx mutant viruses. In vitro, the X(y-a) mutant, but not the X(102) mutant lost interaction with DCAF1. The wild type SIVmne027 and the three vpx mutant SIVs were inoculated by the intra-rectal route into pigtail macaques. Peak levels of plasma viremia of the vpx mutant SIVs were variable, but consistently lower than that observed in macaques infected with wild type SIVmne. In situ hybridization for SIV demonstrated that compared to wild type SIVmne infected macaques five of the six animals inoculated with the vpx mutant SIVs had only low levels of SIV-expressing cells in the rectum, most intestinal epithelial tissues, spleen, and mesenteric and peripheral nodes. CONCLUSIONS: This work demonstrates that the activities of Vpx to overcome restrictions in culture in vitro are also likely to be important for establishment of infection in vivo and suggest that both the nuclear localization and DCAF1-interaction functions of Vpx are critical in vivo.
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spelling pubmed-33538692012-05-17 Vpx is Critical for SIVmne infection of pigtail macaques Belshan, Michael Kimata, Jason T Brown, Charles Cheng, Xiaogang McCulley, Anna Larsen, Alison Thippeshappa, Rajesh Hodara, Vida Giavedoni, Luis Hirsch, Vanessa Ratner, Lee Retrovirology Research BACKGROUND: Viral protein X (Vpx) of SIV has been reported to be important for establishing infection in vivo. Vpx has several different activities in vitro, promoting preintegration complex import into the nucleus in quiescent lymphocytes and overcoming a block in reverse transcription in macrophages. Vpx interacts with the DDB1-CUL4-DCAF1 E3 ligase complex, which may or may not be required for the ascribed functions. The goal of the current study was to determine whether these activities of Vpx are important in vivo. RESULTS: An infectious, pathogenic clone of SIVmne was used to examine correlations between Vpx functions in vitro and in vivo. Three previously described HIV-2 Vpx mutants that were shown to be important for nuclear import of the preintegration complex in quiescent lymphocytes were constructed in SIVmne: A vpx-deleted virus, a truncation of Vpx at amino acid 102 that deletes the C-terminal proline-rich domain (X(102)), and a mutant with tyrosines 66, 69, and 71 changed to alanine (X(y-a)). All mutant viruses replicated similarly to wild type SIVmne027 in primary pigtail macaque PBMCs, and were only slightly retarded in CEMx174 cells. However, all the vpx mutant viruses were defective for replication in both human and pigtail monocyte-derived macrophages. PCR assays demonstrated that the efficiency of reverse transcription and the levels of viral integration in macrophages were substantially reduced for the vpx mutant viruses. In vitro, the X(y-a) mutant, but not the X(102) mutant lost interaction with DCAF1. The wild type SIVmne027 and the three vpx mutant SIVs were inoculated by the intra-rectal route into pigtail macaques. Peak levels of plasma viremia of the vpx mutant SIVs were variable, but consistently lower than that observed in macaques infected with wild type SIVmne. In situ hybridization for SIV demonstrated that compared to wild type SIVmne infected macaques five of the six animals inoculated with the vpx mutant SIVs had only low levels of SIV-expressing cells in the rectum, most intestinal epithelial tissues, spleen, and mesenteric and peripheral nodes. CONCLUSIONS: This work demonstrates that the activities of Vpx to overcome restrictions in culture in vitro are also likely to be important for establishment of infection in vivo and suggest that both the nuclear localization and DCAF1-interaction functions of Vpx are critical in vivo. BioMed Central 2012-04-24 /pmc/articles/PMC3353869/ /pubmed/22531456 http://dx.doi.org/10.1186/1742-4690-9-32 Text en Copyright ©2012 Belshan et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Belshan, Michael
Kimata, Jason T
Brown, Charles
Cheng, Xiaogang
McCulley, Anna
Larsen, Alison
Thippeshappa, Rajesh
Hodara, Vida
Giavedoni, Luis
Hirsch, Vanessa
Ratner, Lee
Vpx is Critical for SIVmne infection of pigtail macaques
title Vpx is Critical for SIVmne infection of pigtail macaques
title_full Vpx is Critical for SIVmne infection of pigtail macaques
title_fullStr Vpx is Critical for SIVmne infection of pigtail macaques
title_full_unstemmed Vpx is Critical for SIVmne infection of pigtail macaques
title_short Vpx is Critical for SIVmne infection of pigtail macaques
title_sort vpx is critical for sivmne infection of pigtail macaques
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3353869/
https://www.ncbi.nlm.nih.gov/pubmed/22531456
http://dx.doi.org/10.1186/1742-4690-9-32
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