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Promyelocytic leukemia protein potently restricts human cytomegalovirus infection in endothelial cells

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ijms-23-11931-v2.pdf (3.382Mb)

peer-reviewed

Erstveröffentlichung
2022-10-08
Autoren
Seitz, Sven
Heusel, Anna Theresa
Stamminger, Thomas
Scherer, Myriam
Herausgeber
Lucin, Pero
Wissenschaftlicher Artikel


Erschienen in
International Journal of Molecular Sciences ; 23 (2022), 19. - Art.-Nr. 11931. - eISSN 1422-0067
Link zur Originalveröffentlichung
https://dx.doi.org/10.3390/ijms231911931
Institutionen
UKU. Institut für Virologie
Dokumentversion
Veröffentlichte Version (Verlags-PDF)
Zusammenfassung
PML nuclear bodies (PML-NBs) are dynamic macromolecular complexes that mediate intrinsic immunity against viruses of different families, including human cytomegalovirus (HCMV). Upon HCMV infection, PML-NBs target viral genomes entering the nucleus and restrict viral immediate–early gene expression by epigenetic silencing. Studies from several groups performed in human fibroblast cells have shown that the major PML-NB components PML, Daxx, Sp100 and ATRX contribute to this repression in a cooperative manner. Their role for HCMV restriction in endothelial cells, however, has not yet been characterized although infected endothelium is thought to play a crucial role for HCMV dissemination and development of vascular disease in vivo. Here, we use conditionally immortalized umbilical vein endothelial cells (HEC-LTT) as a cell culture model to elucidate the impact of PML-NB proteins on lytic HCMV infection. Depletion of individual PML-NB proteins by lentiviral transduction showed a particularly strong antiviral effect of PML in HEC-LTT, compared to human fibroblasts. A closer characterization of this antiviral function revealed that PML may not only effectively inhibit HCMV immediate-early gene expression but also act at later steps of the viral replication cycle. At contrast, we surprisingly noted an antiviral behavior of Daxx in complementary approaches: Depletion of Daxx resulted in decreased viral gene expression, while overexpression of Daxx promoted HCMV infection. In summary, our data demonstrate a cell type-specific effect of PML-NB components on lytic HCMV infection and suggest an important role of PML in the inhibition of HCMV dissemination through infected endothelial cells.
DFG-Projekt uulm
Interferenzmechanismen der viralen Effektorproteine pp71 und IE1 mit der ND10-vermittelten intrinsischen Immunität gegen Cytomegalovirus-Infektionen Teilprojekt B03 / DFG / 52732026 [STA357/7-1]
FOR 5200 / Teilprojekt / Kontrollmechanismen des transkriptionellen silencing während lytischer und latenter Cytomegalovirus-Infektion / DFG / 443644894 [STA357/8-1] 
Schlagwörter
[GND]: Cytomegalie-Virus | PML
[LCSH]: Endothelial cells
[MeSH]: Cytomegalovirus
[Freie Schlagwörter]: HCMV | HEC-LTT | PML nuclear bodies | Daxx
[DDC Sachgruppe]: DDC 570 / Life sciences
Lizenz
CC BY 4.0 International
https://creativecommons.org/licenses/by/4.0/

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DOI & Zitiervorlage

Nutzen Sie bitte diesen Identifier für Zitate & Links: http://dx.doi.org/10.18725/OPARU-46341

Seitz, Sven et al. (2022): Promyelocytic leukemia protein potently restricts human cytomegalovirus infection in endothelial cells. Open Access Repositorium der Universität Ulm und Technischen Hochschule Ulm. http://dx.doi.org/10.18725/OPARU-46341
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