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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.
  • Zhou Y; Department of Cell Biology, School of Life Sciences, Central South University, Changsha, China.
  • Zheng R; Department of Cell Biology, School of Life Sciences, Central South University, Changsha, China.
  • Liu S; Department of Cell Biology, School of Life Sciences, Central South University, Changsha, China.
  • Disoma C; Department of Cell Biology, School of Life Sciences, Central South University, Changsha, China.
  • Du A; Department of Cell Biology, School of Life Sciences, Central South University, Changsha, China.
  • Li S; Department of Cell Biology, School of Life Sciences, Central South University, Changsha, China.
  • Chen Z; Department of Cell Biology, School of Life Sciences, Central South University, Changsha, China.
  • Dong Z; Department of Basic Medicine, School of Medicine, Hunan Normal University, Changsha, China.
  • Zhang Y; Department of Cell Biology, School of Life Sciences, Central South University, Changsha, China.
  • Li S; Department of Cell Biology, School of Life Sciences, Central South University, Changsha, China.
  • Liu P; Department of Cell Biology, School of Life Sciences, Central South University, Changsha, China.
  • Razzaq A; Department of Cell Biology, School of Life Sciences, Central South University, Changsha, China.
  • Chen X; Department of Cell Biology, School of Life Sciences, Central South University, Changsha, China.
  • Liao Y; Department of Cell Biology, School of Life Sciences, Central South University, Changsha, China.
  • Tao S; Department of Cell Biology, School of Life Sciences, Central South University, Changsha, China.
  • Liu Y; Department of Cell Biology, School of Life Sciences, Central South University, Changsha, China.
  • Xu L; Department of Cell Biology, School of Life Sciences, Central South University, Changsha, China.
  • Zhang Q; Institute of Reproductive and Stem Cell Engineering, School of Basic Medical Science, Central South University, Changsha, China.
  • Peng J; Department of General Surgery, Xiangya Hospital, Central South University, Changsha, China.
  • Deng X; Xiangya School of Pharmaceutical Science, Central South University, Changsha, China.
  • Li S; Department of Cell Biology, School of Life Sciences, Central South University, Changsha, China.
  • Jiang T; Center for Systems Medicine, Institute of Basic Medical Sciences, Chinese Academy of Medical Sciences & Peking Union Medical College, Beijing, China.
  • Xia Z; Department of Cell Biology, School of Life Sciences, Central South University, Changsha, China; Hunan Key Laboratory of Animal Models for Human Diseases, Hunan Key Laboratory of Medical Genetics & Center for Medical Genetics, School of Life Sciences, Central South University, Changsha, China. El
J Biol Chem ; 298(2): 101584, 2022 02.
Artículo en Inglés | MEDLINE | ID: covidwho-1699145
ABSTRACT
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.
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Texto completo: Disponible Colección: Bases de datos internacionales Base de datos: MEDLINE Asunto principal: Proteínas no Estructurales Virales / Apoptosis / Infecciones por Coronavirus / Proteínas Supresoras de Tumor / Ubiquitina-Proteína Ligasas / Ubiquitinación / Coronavirus del Síndrome Respiratorio de Oriente Medio Tipo de estudio: Estudio experimental / Estudio pronóstico / Ensayo controlado aleatorizado Límite: Humanos Idioma: Inglés Revista: J Biol Chem Año: 2022 Tipo del documento: Artículo País de afiliación: J.jbc.2022.101584

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Texto completo: Disponible Colección: Bases de datos internacionales Base de datos: MEDLINE Asunto principal: Proteínas no Estructurales Virales / Apoptosis / Infecciones por Coronavirus / Proteínas Supresoras de Tumor / Ubiquitina-Proteína Ligasas / Ubiquitinación / Coronavirus del Síndrome Respiratorio de Oriente Medio Tipo de estudio: Estudio experimental / Estudio pronóstico / Ensayo controlado aleatorizado Límite: Humanos Idioma: Inglés Revista: J Biol Chem Año: 2022 Tipo del documento: Artículo País de afiliación: J.jbc.2022.101584