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Ebola Virus VP35 Interacts Non-Covalently with Ubiquitin Chains to Promote Viral Replication Creating New Therapeutic Opportunities

Ebolavirus (EBOV) belongs to a family of highly pathogenic viruses that cause severe hemorrhagic fever in humans. EBOV replication requires the activity of the viral polymerase complex, which includes the co-factor and Interferon antagonist VP35. We previously showed that the covalent ubiquitination...

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Autores principales: Rodríguez-Salazar, Carlos A., van Tol, Sarah, Mailhot, Olivier, Galdino, Gabriel, Teruel, Natalia, Zhang, Lihong, Warren, Abbey N., González-Orozco, María, Freiberg, Alexander N., Najmanovich, Rafael J., Giraldo, María I., Rajsbaum, Ricardo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10369991/
https://www.ncbi.nlm.nih.gov/pubmed/37503276
http://dx.doi.org/10.1101/2023.07.14.549057
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author Rodríguez-Salazar, Carlos A.
van Tol, Sarah
Mailhot, Olivier
Galdino, Gabriel
Teruel, Natalia
Zhang, Lihong
Warren, Abbey N.
González-Orozco, María
Freiberg, Alexander N.
Najmanovich, Rafael J.
Giraldo, María I.
Rajsbaum, Ricardo
author_facet Rodríguez-Salazar, Carlos A.
van Tol, Sarah
Mailhot, Olivier
Galdino, Gabriel
Teruel, Natalia
Zhang, Lihong
Warren, Abbey N.
González-Orozco, María
Freiberg, Alexander N.
Najmanovich, Rafael J.
Giraldo, María I.
Rajsbaum, Ricardo
author_sort Rodríguez-Salazar, Carlos A.
collection PubMed
description Ebolavirus (EBOV) belongs to a family of highly pathogenic viruses that cause severe hemorrhagic fever in humans. EBOV replication requires the activity of the viral polymerase complex, which includes the co-factor and Interferon antagonist VP35. We previously showed that the covalent ubiquitination of VP35 promotes virus replication by regulating interactions with the polymerase complex. In addition, VP35 can also interact non-covalently with ubiquitin (Ub); however, the function of this interaction is unknown. Here, we report that VP35 interacts with free (unanchored) K63-linked polyUb chains. Ectopic expression of Isopeptidase T (USP5), which is known to degrade unanchored polyUb chains, reduced VP35 association with Ub and correlated with diminished polymerase activity in a minigenome assay. Using computational methods, we modeled the VP35-Ub non-covalent interacting complex, identified the VP35-Ub interacting surface and tested mutations to validate the interface. Docking simulations identified chemical compounds that can block VP35-Ub interactions leading to reduced viral polymerase activity that correlated with reduced replication of infectious EBOV. In conclusion, we identified a novel role of unanchored polyUb in regulating Ebola virus polymerase function and discovered compounds that have promising anti-Ebola virus activity.
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spelling pubmed-103699912023-07-27 Ebola Virus VP35 Interacts Non-Covalently with Ubiquitin Chains to Promote Viral Replication Creating New Therapeutic Opportunities Rodríguez-Salazar, Carlos A. van Tol, Sarah Mailhot, Olivier Galdino, Gabriel Teruel, Natalia Zhang, Lihong Warren, Abbey N. González-Orozco, María Freiberg, Alexander N. Najmanovich, Rafael J. Giraldo, María I. Rajsbaum, Ricardo bioRxiv Article Ebolavirus (EBOV) belongs to a family of highly pathogenic viruses that cause severe hemorrhagic fever in humans. EBOV replication requires the activity of the viral polymerase complex, which includes the co-factor and Interferon antagonist VP35. We previously showed that the covalent ubiquitination of VP35 promotes virus replication by regulating interactions with the polymerase complex. In addition, VP35 can also interact non-covalently with ubiquitin (Ub); however, the function of this interaction is unknown. Here, we report that VP35 interacts with free (unanchored) K63-linked polyUb chains. Ectopic expression of Isopeptidase T (USP5), which is known to degrade unanchored polyUb chains, reduced VP35 association with Ub and correlated with diminished polymerase activity in a minigenome assay. Using computational methods, we modeled the VP35-Ub non-covalent interacting complex, identified the VP35-Ub interacting surface and tested mutations to validate the interface. Docking simulations identified chemical compounds that can block VP35-Ub interactions leading to reduced viral polymerase activity that correlated with reduced replication of infectious EBOV. In conclusion, we identified a novel role of unanchored polyUb in regulating Ebola virus polymerase function and discovered compounds that have promising anti-Ebola virus activity. Cold Spring Harbor Laboratory 2023-07-15 /pmc/articles/PMC10369991/ /pubmed/37503276 http://dx.doi.org/10.1101/2023.07.14.549057 Text en https://creativecommons.org/licenses/by/4.0/This work is licensed under a Creative Commons Attribution 4.0 International License (https://creativecommons.org/licenses/by/4.0/) , which allows reusers to distribute, remix, adapt, and build upon the material in any medium or format, so long as attribution is given to the creator. The license allows for commercial use.
spellingShingle Article
Rodríguez-Salazar, Carlos A.
van Tol, Sarah
Mailhot, Olivier
Galdino, Gabriel
Teruel, Natalia
Zhang, Lihong
Warren, Abbey N.
González-Orozco, María
Freiberg, Alexander N.
Najmanovich, Rafael J.
Giraldo, María I.
Rajsbaum, Ricardo
Ebola Virus VP35 Interacts Non-Covalently with Ubiquitin Chains to Promote Viral Replication Creating New Therapeutic Opportunities
title Ebola Virus VP35 Interacts Non-Covalently with Ubiquitin Chains to Promote Viral Replication Creating New Therapeutic Opportunities
title_full Ebola Virus VP35 Interacts Non-Covalently with Ubiquitin Chains to Promote Viral Replication Creating New Therapeutic Opportunities
title_fullStr Ebola Virus VP35 Interacts Non-Covalently with Ubiquitin Chains to Promote Viral Replication Creating New Therapeutic Opportunities
title_full_unstemmed Ebola Virus VP35 Interacts Non-Covalently with Ubiquitin Chains to Promote Viral Replication Creating New Therapeutic Opportunities
title_short Ebola Virus VP35 Interacts Non-Covalently with Ubiquitin Chains to Promote Viral Replication Creating New Therapeutic Opportunities
title_sort ebola virus vp35 interacts non-covalently with ubiquitin chains to promote viral replication creating new therapeutic opportunities
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10369991/
https://www.ncbi.nlm.nih.gov/pubmed/37503276
http://dx.doi.org/10.1101/2023.07.14.549057
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