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Cellular ESCRT components are recruited to regulate the endocytic trafficking and RNA replication compartment assembly during classical swine fever virus infection

As the important molecular machinery for membrane protein sorting in eukaryotic cells, the endosomal sorting and transport complexes (ESCRT-0/I/II/III and VPS4) usually participate in various replication stages of enveloped viruses, such as endocytosis and budding. The main subunit of ESCRT-I, Tsg10...

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Autores principales: Liu, Chun-chun, Liu, Ya-yun, Zhou, Jiang-fei, Chen, Xi, Chen, Huan, Hu, Jia-huan, Chen, Jing, Zhang, Jin, Sun, Rui-cong, Wei, Jian-chao, Go, Yun Young, Morita, Eiji, Zhou, Bin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8849529/
https://www.ncbi.nlm.nih.gov/pubmed/35120190
http://dx.doi.org/10.1371/journal.ppat.1010294
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author Liu, Chun-chun
Liu, Ya-yun
Zhou, Jiang-fei
Chen, Xi
Chen, Huan
Hu, Jia-huan
Chen, Jing
Zhang, Jin
Sun, Rui-cong
Wei, Jian-chao
Go, Yun Young
Morita, Eiji
Zhou, Bin
author_facet Liu, Chun-chun
Liu, Ya-yun
Zhou, Jiang-fei
Chen, Xi
Chen, Huan
Hu, Jia-huan
Chen, Jing
Zhang, Jin
Sun, Rui-cong
Wei, Jian-chao
Go, Yun Young
Morita, Eiji
Zhou, Bin
author_sort Liu, Chun-chun
collection PubMed
description As the important molecular machinery for membrane protein sorting in eukaryotic cells, the endosomal sorting and transport complexes (ESCRT-0/I/II/III and VPS4) usually participate in various replication stages of enveloped viruses, such as endocytosis and budding. The main subunit of ESCRT-I, Tsg101, has been previously revealed to play a role in the entry and replication of classical swine fever virus (CSFV). However, the effect of the whole ESCRT machinery during CSFV infection has not yet been well defined. Here, we systematically determine the effects of subunits of ESCRT on entry, replication, and budding of CSFV by genetic analysis. We show that EAP20 (VPS25) (ESCRT-II), CHMP4B and CHMP7 (ESCRT-III) regulate CSFV entry and assist vesicles in transporting CSFV from Clathrin, early endosomes, late endosomes to lysosomes. Importantly, we first demonstrate that HRS (ESCRT-0), VPS28 (ESCRT-I), VPS25 (ESCRT-II) and adaptor protein ALIX play important roles in the formation of virus replication complexes (VRC) together with CHMP2B/4B/7 (ESCRT-III), and VPS4A. Further analyses reveal these subunits interact with CSFV nonstructural proteins (NS) and locate in the endoplasmic reticulum, but not Golgi, suggesting the role of ESCRT in regulating VRC assembly. In addition, we demonstrate that VPS4A is close to lipid droplets (LDs), indicating the importance of lipid metabolism in the formation of VRC and nucleic acid production. Altogether, we draw a new picture of cellular ESCRT machinery in CSFV entry and VRC formation, which could provide alternative strategies for preventing and controlling the diseases caused by CSFV or other Pestivirus.
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spelling pubmed-88495292022-02-17 Cellular ESCRT components are recruited to regulate the endocytic trafficking and RNA replication compartment assembly during classical swine fever virus infection Liu, Chun-chun Liu, Ya-yun Zhou, Jiang-fei Chen, Xi Chen, Huan Hu, Jia-huan Chen, Jing Zhang, Jin Sun, Rui-cong Wei, Jian-chao Go, Yun Young Morita, Eiji Zhou, Bin PLoS Pathog Research Article As the important molecular machinery for membrane protein sorting in eukaryotic cells, the endosomal sorting and transport complexes (ESCRT-0/I/II/III and VPS4) usually participate in various replication stages of enveloped viruses, such as endocytosis and budding. The main subunit of ESCRT-I, Tsg101, has been previously revealed to play a role in the entry and replication of classical swine fever virus (CSFV). However, the effect of the whole ESCRT machinery during CSFV infection has not yet been well defined. Here, we systematically determine the effects of subunits of ESCRT on entry, replication, and budding of CSFV by genetic analysis. We show that EAP20 (VPS25) (ESCRT-II), CHMP4B and CHMP7 (ESCRT-III) regulate CSFV entry and assist vesicles in transporting CSFV from Clathrin, early endosomes, late endosomes to lysosomes. Importantly, we first demonstrate that HRS (ESCRT-0), VPS28 (ESCRT-I), VPS25 (ESCRT-II) and adaptor protein ALIX play important roles in the formation of virus replication complexes (VRC) together with CHMP2B/4B/7 (ESCRT-III), and VPS4A. Further analyses reveal these subunits interact with CSFV nonstructural proteins (NS) and locate in the endoplasmic reticulum, but not Golgi, suggesting the role of ESCRT in regulating VRC assembly. In addition, we demonstrate that VPS4A is close to lipid droplets (LDs), indicating the importance of lipid metabolism in the formation of VRC and nucleic acid production. Altogether, we draw a new picture of cellular ESCRT machinery in CSFV entry and VRC formation, which could provide alternative strategies for preventing and controlling the diseases caused by CSFV or other Pestivirus. Public Library of Science 2022-02-04 /pmc/articles/PMC8849529/ /pubmed/35120190 http://dx.doi.org/10.1371/journal.ppat.1010294 Text en © 2022 Liu et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Liu, Chun-chun
Liu, Ya-yun
Zhou, Jiang-fei
Chen, Xi
Chen, Huan
Hu, Jia-huan
Chen, Jing
Zhang, Jin
Sun, Rui-cong
Wei, Jian-chao
Go, Yun Young
Morita, Eiji
Zhou, Bin
Cellular ESCRT components are recruited to regulate the endocytic trafficking and RNA replication compartment assembly during classical swine fever virus infection
title Cellular ESCRT components are recruited to regulate the endocytic trafficking and RNA replication compartment assembly during classical swine fever virus infection
title_full Cellular ESCRT components are recruited to regulate the endocytic trafficking and RNA replication compartment assembly during classical swine fever virus infection
title_fullStr Cellular ESCRT components are recruited to regulate the endocytic trafficking and RNA replication compartment assembly during classical swine fever virus infection
title_full_unstemmed Cellular ESCRT components are recruited to regulate the endocytic trafficking and RNA replication compartment assembly during classical swine fever virus infection
title_short Cellular ESCRT components are recruited to regulate the endocytic trafficking and RNA replication compartment assembly during classical swine fever virus infection
title_sort cellular escrt components are recruited to regulate the endocytic trafficking and rna replication compartment assembly during classical swine fever virus infection
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8849529/
https://www.ncbi.nlm.nih.gov/pubmed/35120190
http://dx.doi.org/10.1371/journal.ppat.1010294
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