Cargando…

Identification of Critical Regions in Human SAMHD1 Required for Nuclear Localization and Vpx-Mediated Degradation

The sterile alpha motif (SAM) and HD domain-containing protein-1 (SAMHD1) inhibits the infection of resting CD4+ T cells and myeloid cells by human and related simian immunodeficiency viruses (HIV and SIV). Vpx inactivates SAMHD1 by promoting its proteasome-dependent degradation through an interacti...

Descripción completa

Detalles Bibliográficos
Autores principales: Guo, Haoran, Wei, Wei, Wei, Zhenhong, Liu, Xianjun, Evans, Sean L., Yang, Weiming, Wang, Hong, Guo, Ying, Zhao, Ke, Zhou, Jian-Ying, Yu, Xiao-Fang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3708934/
https://www.ncbi.nlm.nih.gov/pubmed/23874389
http://dx.doi.org/10.1371/journal.pone.0066201
_version_ 1782276691601653760
author Guo, Haoran
Wei, Wei
Wei, Zhenhong
Liu, Xianjun
Evans, Sean L.
Yang, Weiming
Wang, Hong
Guo, Ying
Zhao, Ke
Zhou, Jian-Ying
Yu, Xiao-Fang
author_facet Guo, Haoran
Wei, Wei
Wei, Zhenhong
Liu, Xianjun
Evans, Sean L.
Yang, Weiming
Wang, Hong
Guo, Ying
Zhao, Ke
Zhou, Jian-Ying
Yu, Xiao-Fang
author_sort Guo, Haoran
collection PubMed
description The sterile alpha motif (SAM) and HD domain-containing protein-1 (SAMHD1) inhibits the infection of resting CD4+ T cells and myeloid cells by human and related simian immunodeficiency viruses (HIV and SIV). Vpx inactivates SAMHD1 by promoting its proteasome-dependent degradation through an interaction with CRL4 (DCAF1) E3 ubiquitin ligase and the C-terminal region of SAMHD1. However, the determinants in SAMHD1 that are required for Vpx-mediated degradation have not been well characterized. SAMHD1 contains a classical nuclear localization signal (NLS), and NLS point mutants are cytoplasmic and resistant to Vpx-mediated degradation. Here, we demonstrate that NLS-mutant SAMHD1 K11A can be rescued by wild-type SAMHD1, restoring its nuclear localization; consequently, SAMHD1 K11A became sensitive to Vpx-mediated degradation in the presence of wild-type SAMHD1. Surprisingly, deletion of N-terminal regions of SAMHD1, including the classical NLS, generated mutant SAMHD1 proteins that were again sensitive to Vpx-mediated degradation. Unlike SAMHD1 K11A, these deletion mutants could be detected in the nucleus. Interestingly, NLS-defective SAMHD1 could still bind to karyopherin-β1 and other nuclear proteins. We also determined that the linker region between the SAM and HD domain and the HD domain itself is important for Vpx-mediated degradation but not Vpx interaction. Thus, SAMHD1 contains an additional nuclear targeting mechanism in addition to the classical NLS. Our data indicate that multiple regions in SAMHD1 are critical for Vpx-mediated nuclear degradation and that association with Vpx is not sufficient for Vpx-mediated degradation of SAMHD1. Since the linker region and HD domain may be involved in SAMHD1 multimerization, our results suggest that SAMHD1 multimerization may be required for Vpx-mediation degradation.
format Online
Article
Text
id pubmed-3708934
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-37089342013-07-19 Identification of Critical Regions in Human SAMHD1 Required for Nuclear Localization and Vpx-Mediated Degradation Guo, Haoran Wei, Wei Wei, Zhenhong Liu, Xianjun Evans, Sean L. Yang, Weiming Wang, Hong Guo, Ying Zhao, Ke Zhou, Jian-Ying Yu, Xiao-Fang PLoS One Research Article The sterile alpha motif (SAM) and HD domain-containing protein-1 (SAMHD1) inhibits the infection of resting CD4+ T cells and myeloid cells by human and related simian immunodeficiency viruses (HIV and SIV). Vpx inactivates SAMHD1 by promoting its proteasome-dependent degradation through an interaction with CRL4 (DCAF1) E3 ubiquitin ligase and the C-terminal region of SAMHD1. However, the determinants in SAMHD1 that are required for Vpx-mediated degradation have not been well characterized. SAMHD1 contains a classical nuclear localization signal (NLS), and NLS point mutants are cytoplasmic and resistant to Vpx-mediated degradation. Here, we demonstrate that NLS-mutant SAMHD1 K11A can be rescued by wild-type SAMHD1, restoring its nuclear localization; consequently, SAMHD1 K11A became sensitive to Vpx-mediated degradation in the presence of wild-type SAMHD1. Surprisingly, deletion of N-terminal regions of SAMHD1, including the classical NLS, generated mutant SAMHD1 proteins that were again sensitive to Vpx-mediated degradation. Unlike SAMHD1 K11A, these deletion mutants could be detected in the nucleus. Interestingly, NLS-defective SAMHD1 could still bind to karyopherin-β1 and other nuclear proteins. We also determined that the linker region between the SAM and HD domain and the HD domain itself is important for Vpx-mediated degradation but not Vpx interaction. Thus, SAMHD1 contains an additional nuclear targeting mechanism in addition to the classical NLS. Our data indicate that multiple regions in SAMHD1 are critical for Vpx-mediated nuclear degradation and that association with Vpx is not sufficient for Vpx-mediated degradation of SAMHD1. Since the linker region and HD domain may be involved in SAMHD1 multimerization, our results suggest that SAMHD1 multimerization may be required for Vpx-mediation degradation. Public Library of Science 2013-07-11 /pmc/articles/PMC3708934/ /pubmed/23874389 http://dx.doi.org/10.1371/journal.pone.0066201 Text en © 2013 Guo et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Guo, Haoran
Wei, Wei
Wei, Zhenhong
Liu, Xianjun
Evans, Sean L.
Yang, Weiming
Wang, Hong
Guo, Ying
Zhao, Ke
Zhou, Jian-Ying
Yu, Xiao-Fang
Identification of Critical Regions in Human SAMHD1 Required for Nuclear Localization and Vpx-Mediated Degradation
title Identification of Critical Regions in Human SAMHD1 Required for Nuclear Localization and Vpx-Mediated Degradation
title_full Identification of Critical Regions in Human SAMHD1 Required for Nuclear Localization and Vpx-Mediated Degradation
title_fullStr Identification of Critical Regions in Human SAMHD1 Required for Nuclear Localization and Vpx-Mediated Degradation
title_full_unstemmed Identification of Critical Regions in Human SAMHD1 Required for Nuclear Localization and Vpx-Mediated Degradation
title_short Identification of Critical Regions in Human SAMHD1 Required for Nuclear Localization and Vpx-Mediated Degradation
title_sort identification of critical regions in human samhd1 required for nuclear localization and vpx-mediated degradation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3708934/
https://www.ncbi.nlm.nih.gov/pubmed/23874389
http://dx.doi.org/10.1371/journal.pone.0066201
work_keys_str_mv AT guohaoran identificationofcriticalregionsinhumansamhd1requiredfornuclearlocalizationandvpxmediateddegradation
AT weiwei identificationofcriticalregionsinhumansamhd1requiredfornuclearlocalizationandvpxmediateddegradation
AT weizhenhong identificationofcriticalregionsinhumansamhd1requiredfornuclearlocalizationandvpxmediateddegradation
AT liuxianjun identificationofcriticalregionsinhumansamhd1requiredfornuclearlocalizationandvpxmediateddegradation
AT evansseanl identificationofcriticalregionsinhumansamhd1requiredfornuclearlocalizationandvpxmediateddegradation
AT yangweiming identificationofcriticalregionsinhumansamhd1requiredfornuclearlocalizationandvpxmediateddegradation
AT wanghong identificationofcriticalregionsinhumansamhd1requiredfornuclearlocalizationandvpxmediateddegradation
AT guoying identificationofcriticalregionsinhumansamhd1requiredfornuclearlocalizationandvpxmediateddegradation
AT zhaoke identificationofcriticalregionsinhumansamhd1requiredfornuclearlocalizationandvpxmediateddegradation
AT zhoujianying identificationofcriticalregionsinhumansamhd1requiredfornuclearlocalizationandvpxmediateddegradation
AT yuxiaofang identificationofcriticalregionsinhumansamhd1requiredfornuclearlocalizationandvpxmediateddegradation