Cargando…

Host E3 ligase HUWE1 attenuates the proapoptotic activity of the MERS-CoV accessory protein ORF3 by promoting its ubiquitin-dependent degradation

With the outbreak of severe acute respiratory syndrome coronavirus-2 (SARS-CoV-2), coronaviruses have begun to attract great attention across the world. Of the known human coronaviruses, however, Middle East respiratory syndrome coronavirus (MERS-CoV) is the most lethal. Coronavirus proteins can be...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhou, Yuzheng, Zheng, Rong, Liu, Sixu, Disoma, Cyrollah, Du, Ashuai, Li, Shiqin, Chen, Zongpeng, Dong, Zijun, Zhang, Yongxing, Li, Sijia, Liu, Pinjia, Razzaq, Aroona, Chen, Xuan, Liao, Yujie, Tao, Siyi, Liu, Yuxin, Xu, Lunan, Zhang, Qianjun, Peng, Jian, Deng, Xu, Li, Shanni, Jiang, Taijiao, Xia, Zanxian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8755419/
https://www.ncbi.nlm.nih.gov/pubmed/35032548
http://dx.doi.org/10.1016/j.jbc.2022.101584
_version_ 1784632377189859328
author Zhou, Yuzheng
Zheng, Rong
Liu, Sixu
Disoma, Cyrollah
Du, Ashuai
Li, Shiqin
Chen, Zongpeng
Dong, Zijun
Zhang, Yongxing
Li, Sijia
Liu, Pinjia
Razzaq, Aroona
Chen, Xuan
Liao, Yujie
Tao, Siyi
Liu, Yuxin
Xu, Lunan
Zhang, Qianjun
Peng, Jian
Deng, Xu
Li, Shanni
Jiang, Taijiao
Xia, Zanxian
author_facet Zhou, Yuzheng
Zheng, Rong
Liu, Sixu
Disoma, Cyrollah
Du, Ashuai
Li, Shiqin
Chen, Zongpeng
Dong, Zijun
Zhang, Yongxing
Li, Sijia
Liu, Pinjia
Razzaq, Aroona
Chen, Xuan
Liao, Yujie
Tao, Siyi
Liu, Yuxin
Xu, Lunan
Zhang, Qianjun
Peng, Jian
Deng, Xu
Li, Shanni
Jiang, Taijiao
Xia, Zanxian
author_sort Zhou, Yuzheng
collection PubMed
description With the outbreak of severe acute respiratory syndrome coronavirus-2 (SARS-CoV-2), coronaviruses have begun to attract great attention across the world. Of the known human coronaviruses, however, Middle East respiratory syndrome coronavirus (MERS-CoV) is the most lethal. Coronavirus proteins can be divided into three groups: nonstructural proteins, structural proteins, and accessory proteins. While the number of each of these proteins varies greatly among different coronaviruses, accessory proteins are most closely related to the pathogenicity of the virus. We found for the first time that the ORF3 accessory protein of MERS-CoV, which closely resembles the ORF3a proteins of severe acute respiratory syndrome coronavirus and SARS-CoV-2, has the ability to induce apoptosis in cells in a dose-dependent manner. Through bioinformatics analysis and validation, we revealed that ORF3 is an unstable protein and has a shorter half-life in cells compared to that of severe acute respiratory syndrome coronavirus and SARS-CoV-2 ORF3a proteins. After screening, we identified a host E3 ligase, HUWE1, that specifically induces MERS-CoV ORF3 protein ubiquitination and degradation through the ubiquitin–proteasome system. This results in the diminished ability of ORF3 to induce apoptosis, which might partially explain the lower spread of MERS-CoV compared to other coronaviruses. In summary, this study reveals a pathological function of MERS-CoV ORF3 protein and identifies a potential host antiviral protein, HUWE1, with an ability to antagonize MERS-CoV pathogenesis by inducing ORF3 degradation, thus enriching our knowledge of the pathogenesis of MERS-CoV and suggesting new targets and strategies for clinical development of drugs for MERS-CoV treatment.
format Online
Article
Text
id pubmed-8755419
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher American Society for Biochemistry and Molecular Biology
record_format MEDLINE/PubMed
spelling pubmed-87554192022-01-13 Host E3 ligase HUWE1 attenuates the proapoptotic activity of the MERS-CoV accessory protein ORF3 by promoting its ubiquitin-dependent degradation Zhou, Yuzheng Zheng, Rong Liu, Sixu Disoma, Cyrollah Du, Ashuai Li, Shiqin Chen, Zongpeng Dong, Zijun Zhang, Yongxing Li, Sijia Liu, Pinjia Razzaq, Aroona Chen, Xuan Liao, Yujie Tao, Siyi Liu, Yuxin Xu, Lunan Zhang, Qianjun Peng, Jian Deng, Xu Li, Shanni Jiang, Taijiao Xia, Zanxian J Biol Chem Research Article With the outbreak of severe acute respiratory syndrome coronavirus-2 (SARS-CoV-2), coronaviruses have begun to attract great attention across the world. Of the known human coronaviruses, however, Middle East respiratory syndrome coronavirus (MERS-CoV) is the most lethal. Coronavirus proteins can be divided into three groups: nonstructural proteins, structural proteins, and accessory proteins. While the number of each of these proteins varies greatly among different coronaviruses, accessory proteins are most closely related to the pathogenicity of the virus. We found for the first time that the ORF3 accessory protein of MERS-CoV, which closely resembles the ORF3a proteins of severe acute respiratory syndrome coronavirus and SARS-CoV-2, has the ability to induce apoptosis in cells in a dose-dependent manner. Through bioinformatics analysis and validation, we revealed that ORF3 is an unstable protein and has a shorter half-life in cells compared to that of severe acute respiratory syndrome coronavirus and SARS-CoV-2 ORF3a proteins. After screening, we identified a host E3 ligase, HUWE1, that specifically induces MERS-CoV ORF3 protein ubiquitination and degradation through the ubiquitin–proteasome system. This results in the diminished ability of ORF3 to induce apoptosis, which might partially explain the lower spread of MERS-CoV compared to other coronaviruses. In summary, this study reveals a pathological function of MERS-CoV ORF3 protein and identifies a potential host antiviral protein, HUWE1, with an ability to antagonize MERS-CoV pathogenesis by inducing ORF3 degradation, thus enriching our knowledge of the pathogenesis of MERS-CoV and suggesting new targets and strategies for clinical development of drugs for MERS-CoV treatment. American Society for Biochemistry and Molecular Biology 2022-01-13 /pmc/articles/PMC8755419/ /pubmed/35032548 http://dx.doi.org/10.1016/j.jbc.2022.101584 Text en © 2022 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Zhou, Yuzheng
Zheng, Rong
Liu, Sixu
Disoma, Cyrollah
Du, Ashuai
Li, Shiqin
Chen, Zongpeng
Dong, Zijun
Zhang, Yongxing
Li, Sijia
Liu, Pinjia
Razzaq, Aroona
Chen, Xuan
Liao, Yujie
Tao, Siyi
Liu, Yuxin
Xu, Lunan
Zhang, Qianjun
Peng, Jian
Deng, Xu
Li, Shanni
Jiang, Taijiao
Xia, Zanxian
Host E3 ligase HUWE1 attenuates the proapoptotic activity of the MERS-CoV accessory protein ORF3 by promoting its ubiquitin-dependent degradation
title Host E3 ligase HUWE1 attenuates the proapoptotic activity of the MERS-CoV accessory protein ORF3 by promoting its ubiquitin-dependent degradation
title_full Host E3 ligase HUWE1 attenuates the proapoptotic activity of the MERS-CoV accessory protein ORF3 by promoting its ubiquitin-dependent degradation
title_fullStr Host E3 ligase HUWE1 attenuates the proapoptotic activity of the MERS-CoV accessory protein ORF3 by promoting its ubiquitin-dependent degradation
title_full_unstemmed Host E3 ligase HUWE1 attenuates the proapoptotic activity of the MERS-CoV accessory protein ORF3 by promoting its ubiquitin-dependent degradation
title_short Host E3 ligase HUWE1 attenuates the proapoptotic activity of the MERS-CoV accessory protein ORF3 by promoting its ubiquitin-dependent degradation
title_sort host e3 ligase huwe1 attenuates the proapoptotic activity of the mers-cov accessory protein orf3 by promoting its ubiquitin-dependent degradation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8755419/
https://www.ncbi.nlm.nih.gov/pubmed/35032548
http://dx.doi.org/10.1016/j.jbc.2022.101584
work_keys_str_mv AT zhouyuzheng hoste3ligasehuwe1attenuatestheproapoptoticactivityofthemerscovaccessoryproteinorf3bypromotingitsubiquitindependentdegradation
AT zhengrong hoste3ligasehuwe1attenuatestheproapoptoticactivityofthemerscovaccessoryproteinorf3bypromotingitsubiquitindependentdegradation
AT liusixu hoste3ligasehuwe1attenuatestheproapoptoticactivityofthemerscovaccessoryproteinorf3bypromotingitsubiquitindependentdegradation
AT disomacyrollah hoste3ligasehuwe1attenuatestheproapoptoticactivityofthemerscovaccessoryproteinorf3bypromotingitsubiquitindependentdegradation
AT duashuai hoste3ligasehuwe1attenuatestheproapoptoticactivityofthemerscovaccessoryproteinorf3bypromotingitsubiquitindependentdegradation
AT lishiqin hoste3ligasehuwe1attenuatestheproapoptoticactivityofthemerscovaccessoryproteinorf3bypromotingitsubiquitindependentdegradation
AT chenzongpeng hoste3ligasehuwe1attenuatestheproapoptoticactivityofthemerscovaccessoryproteinorf3bypromotingitsubiquitindependentdegradation
AT dongzijun hoste3ligasehuwe1attenuatestheproapoptoticactivityofthemerscovaccessoryproteinorf3bypromotingitsubiquitindependentdegradation
AT zhangyongxing hoste3ligasehuwe1attenuatestheproapoptoticactivityofthemerscovaccessoryproteinorf3bypromotingitsubiquitindependentdegradation
AT lisijia hoste3ligasehuwe1attenuatestheproapoptoticactivityofthemerscovaccessoryproteinorf3bypromotingitsubiquitindependentdegradation
AT liupinjia hoste3ligasehuwe1attenuatestheproapoptoticactivityofthemerscovaccessoryproteinorf3bypromotingitsubiquitindependentdegradation
AT razzaqaroona hoste3ligasehuwe1attenuatestheproapoptoticactivityofthemerscovaccessoryproteinorf3bypromotingitsubiquitindependentdegradation
AT chenxuan hoste3ligasehuwe1attenuatestheproapoptoticactivityofthemerscovaccessoryproteinorf3bypromotingitsubiquitindependentdegradation
AT liaoyujie hoste3ligasehuwe1attenuatestheproapoptoticactivityofthemerscovaccessoryproteinorf3bypromotingitsubiquitindependentdegradation
AT taosiyi hoste3ligasehuwe1attenuatestheproapoptoticactivityofthemerscovaccessoryproteinorf3bypromotingitsubiquitindependentdegradation
AT liuyuxin hoste3ligasehuwe1attenuatestheproapoptoticactivityofthemerscovaccessoryproteinorf3bypromotingitsubiquitindependentdegradation
AT xulunan hoste3ligasehuwe1attenuatestheproapoptoticactivityofthemerscovaccessoryproteinorf3bypromotingitsubiquitindependentdegradation
AT zhangqianjun hoste3ligasehuwe1attenuatestheproapoptoticactivityofthemerscovaccessoryproteinorf3bypromotingitsubiquitindependentdegradation
AT pengjian hoste3ligasehuwe1attenuatestheproapoptoticactivityofthemerscovaccessoryproteinorf3bypromotingitsubiquitindependentdegradation
AT dengxu hoste3ligasehuwe1attenuatestheproapoptoticactivityofthemerscovaccessoryproteinorf3bypromotingitsubiquitindependentdegradation
AT lishanni hoste3ligasehuwe1attenuatestheproapoptoticactivityofthemerscovaccessoryproteinorf3bypromotingitsubiquitindependentdegradation
AT jiangtaijiao hoste3ligasehuwe1attenuatestheproapoptoticactivityofthemerscovaccessoryproteinorf3bypromotingitsubiquitindependentdegradation
AT xiazanxian hoste3ligasehuwe1attenuatestheproapoptoticactivityofthemerscovaccessoryproteinorf3bypromotingitsubiquitindependentdegradation