Cargando…

The DACH1 Gene Transcriptional Activation and Protein Degradation Mediated by Transactivator Tas of Prototype Foamy Virus

Foamy viruses are members of the Retroviridae family’s Spumaretrovirinae subfamily. They induce cell vacuolation and exhibit a foamy pathogenic impact after infecting cells. DACH1 (dachshund family transcription factor 1) is a crucial cytokine linked to tumor development, and is associated with the...

Descripción completa

Detalles Bibliográficos
Autores principales: Ma, Yongping, Wei, Jie, Song, Jing, Hu, Zhongxiang, Zhang, Ruifen, Li, Zhi, Sun, Yan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10534306/
https://www.ncbi.nlm.nih.gov/pubmed/37766305
http://dx.doi.org/10.3390/v15091899
_version_ 1785112362895802368
author Ma, Yongping
Wei, Jie
Song, Jing
Hu, Zhongxiang
Zhang, Ruifen
Li, Zhi
Sun, Yan
author_facet Ma, Yongping
Wei, Jie
Song, Jing
Hu, Zhongxiang
Zhang, Ruifen
Li, Zhi
Sun, Yan
author_sort Ma, Yongping
collection PubMed
description Foamy viruses are members of the Retroviridae family’s Spumaretrovirinae subfamily. They induce cell vacuolation and exhibit a foamy pathogenic impact after infecting cells. DACH1 (dachshund family transcription factor 1) is a crucial cytokine linked to tumor development, and is associated with the growth of many different malignant tumor cells. Additionally, DACH1 suppresses pancreatic cell proliferation and is involved in diabetes insulin signaling. Prototype foamy viruses (PFVs) were used for the investigation of the regulatory mechanism of FVs on cellular DACH1 expression. The results show that DACH1 expression in PFV-infected cells was inconsistent at both the transcriptional and protein levels. At the transcriptional level, DACH1 was significantly activated by PFV transactivator Tas, and dual-luciferase reporter gene tests, EMSA, and ChIP assays found a Tas response element of 21 nucleotides in the DACH1 promoter. PFV and Tas did not boost the levels of DACH1 protein in a manner consistent with the high levels of DACH1 transcription expression. It was noted that Tas increased the expression of the Ser/Thr protein phosphatase PPM1E, causing PPM1E-mediated post-translational SUMOylation alterations of DACH1 to prompt DACH1 to degrade. The reason for DACH1 protein degradation is that DACH1 inhibits PFV replication. To sum up, these findings show that PFV upregulated the transcription of DACH1, while urging its protein into PPM1E-mediated SUMOylation, to eliminate the adverse effect of DACH1 overexpression of host cells on viral replication and promote virus survival.
format Online
Article
Text
id pubmed-10534306
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-105343062023-09-29 The DACH1 Gene Transcriptional Activation and Protein Degradation Mediated by Transactivator Tas of Prototype Foamy Virus Ma, Yongping Wei, Jie Song, Jing Hu, Zhongxiang Zhang, Ruifen Li, Zhi Sun, Yan Viruses Article Foamy viruses are members of the Retroviridae family’s Spumaretrovirinae subfamily. They induce cell vacuolation and exhibit a foamy pathogenic impact after infecting cells. DACH1 (dachshund family transcription factor 1) is a crucial cytokine linked to tumor development, and is associated with the growth of many different malignant tumor cells. Additionally, DACH1 suppresses pancreatic cell proliferation and is involved in diabetes insulin signaling. Prototype foamy viruses (PFVs) were used for the investigation of the regulatory mechanism of FVs on cellular DACH1 expression. The results show that DACH1 expression in PFV-infected cells was inconsistent at both the transcriptional and protein levels. At the transcriptional level, DACH1 was significantly activated by PFV transactivator Tas, and dual-luciferase reporter gene tests, EMSA, and ChIP assays found a Tas response element of 21 nucleotides in the DACH1 promoter. PFV and Tas did not boost the levels of DACH1 protein in a manner consistent with the high levels of DACH1 transcription expression. It was noted that Tas increased the expression of the Ser/Thr protein phosphatase PPM1E, causing PPM1E-mediated post-translational SUMOylation alterations of DACH1 to prompt DACH1 to degrade. The reason for DACH1 protein degradation is that DACH1 inhibits PFV replication. To sum up, these findings show that PFV upregulated the transcription of DACH1, while urging its protein into PPM1E-mediated SUMOylation, to eliminate the adverse effect of DACH1 overexpression of host cells on viral replication and promote virus survival. MDPI 2023-09-08 /pmc/articles/PMC10534306/ /pubmed/37766305 http://dx.doi.org/10.3390/v15091899 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ma, Yongping
Wei, Jie
Song, Jing
Hu, Zhongxiang
Zhang, Ruifen
Li, Zhi
Sun, Yan
The DACH1 Gene Transcriptional Activation and Protein Degradation Mediated by Transactivator Tas of Prototype Foamy Virus
title The DACH1 Gene Transcriptional Activation and Protein Degradation Mediated by Transactivator Tas of Prototype Foamy Virus
title_full The DACH1 Gene Transcriptional Activation and Protein Degradation Mediated by Transactivator Tas of Prototype Foamy Virus
title_fullStr The DACH1 Gene Transcriptional Activation and Protein Degradation Mediated by Transactivator Tas of Prototype Foamy Virus
title_full_unstemmed The DACH1 Gene Transcriptional Activation and Protein Degradation Mediated by Transactivator Tas of Prototype Foamy Virus
title_short The DACH1 Gene Transcriptional Activation and Protein Degradation Mediated by Transactivator Tas of Prototype Foamy Virus
title_sort dach1 gene transcriptional activation and protein degradation mediated by transactivator tas of prototype foamy virus
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10534306/
https://www.ncbi.nlm.nih.gov/pubmed/37766305
http://dx.doi.org/10.3390/v15091899
work_keys_str_mv AT mayongping thedach1genetranscriptionalactivationandproteindegradationmediatedbytransactivatortasofprototypefoamyvirus
AT weijie thedach1genetranscriptionalactivationandproteindegradationmediatedbytransactivatortasofprototypefoamyvirus
AT songjing thedach1genetranscriptionalactivationandproteindegradationmediatedbytransactivatortasofprototypefoamyvirus
AT huzhongxiang thedach1genetranscriptionalactivationandproteindegradationmediatedbytransactivatortasofprototypefoamyvirus
AT zhangruifen thedach1genetranscriptionalactivationandproteindegradationmediatedbytransactivatortasofprototypefoamyvirus
AT lizhi thedach1genetranscriptionalactivationandproteindegradationmediatedbytransactivatortasofprototypefoamyvirus
AT sunyan thedach1genetranscriptionalactivationandproteindegradationmediatedbytransactivatortasofprototypefoamyvirus
AT mayongping dach1genetranscriptionalactivationandproteindegradationmediatedbytransactivatortasofprototypefoamyvirus
AT weijie dach1genetranscriptionalactivationandproteindegradationmediatedbytransactivatortasofprototypefoamyvirus
AT songjing dach1genetranscriptionalactivationandproteindegradationmediatedbytransactivatortasofprototypefoamyvirus
AT huzhongxiang dach1genetranscriptionalactivationandproteindegradationmediatedbytransactivatortasofprototypefoamyvirus
AT zhangruifen dach1genetranscriptionalactivationandproteindegradationmediatedbytransactivatortasofprototypefoamyvirus
AT lizhi dach1genetranscriptionalactivationandproteindegradationmediatedbytransactivatortasofprototypefoamyvirus
AT sunyan dach1genetranscriptionalactivationandproteindegradationmediatedbytransactivatortasofprototypefoamyvirus