SNAP47 Interacts with ATG14 to Promote VP1 Conjugation and CVB3 Propagation

Coxsackievirus B3 (CVB3), an enterovirus (EV) in the family of <i>Picornaviridae</i>, is a global human pathogen for which effective antiviral treatments and vaccines are lacking. Previous research demonstrated that EV-D68 downregulated the membrane fusion protein SNAP47 (synaptosome ass...

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Main Authors: Pinhao Xiang, Yasir Mohamud, Honglin Luo
Format: Article
Language:English
Published: MDPI AG 2021-08-01
Series:Cells
Subjects:
VP1
Online Access:https://www.mdpi.com/2073-4409/10/8/2141
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spelling doaj-fdcb86fd6da545cba7f3192943341e7a2021-08-26T13:37:48ZengMDPI AGCells2073-44092021-08-01102141214110.3390/cells10082141SNAP47 Interacts with ATG14 to Promote VP1 Conjugation and CVB3 PropagationPinhao Xiang0Yasir Mohamud1Honglin Luo2Center for Heart Lung Innovation, St. Paul’s Hospital and Department of Pathology and Laboratory Medicine, University of British Columbia, Vancouver, BC V6Z 1Y6, CanadaCenter for Heart Lung Innovation, St. Paul’s Hospital and Department of Pathology and Laboratory Medicine, University of British Columbia, Vancouver, BC V6Z 1Y6, CanadaCenter for Heart Lung Innovation, St. Paul’s Hospital and Department of Pathology and Laboratory Medicine, University of British Columbia, Vancouver, BC V6Z 1Y6, CanadaCoxsackievirus B3 (CVB3), an enterovirus (EV) in the family of <i>Picornaviridae</i>, is a global human pathogen for which effective antiviral treatments and vaccines are lacking. Previous research demonstrated that EV-D68 downregulated the membrane fusion protein SNAP47 (synaptosome associated protein 47) and SNAP47 promoted EV-D68 replication via regulating autophagy. In the current study, we investigated the interplay between CVB3 and cellular SNAP47 using HEK293T/HeLa cell models. We showed that, upon CVB3 infection, protein levels of SNAP47 decreased independent of the activity of virus-encoded proteinase 3C. We further demonstrated that the depletion of SNAP47 inhibited CVB3 infection, indicating a pro-viral function of SNAP47. Moreover, we found that SNAP47 co-localizes with the autophagy-related protein ATG14 on the cellular membrane fractions together with viral capsid protein VP1, and expression of SNAP47 or ATG14 enhanced VP1 conjugation. Finally, we revealed that disulfide interactions had an important role in strengthening VP1 conjugation. Collectively, our study elucidated a mechanism by which SNAP47 and ATG14 promoted CVB3 propagation through facilitating viral capsid assembly.https://www.mdpi.com/2073-4409/10/8/2141SNARESNAP47ATG14autophagycoxsackievirus B3VP1
collection DOAJ
language English
format Article
sources DOAJ
author Pinhao Xiang
Yasir Mohamud
Honglin Luo
spellingShingle Pinhao Xiang
Yasir Mohamud
Honglin Luo
SNAP47 Interacts with ATG14 to Promote VP1 Conjugation and CVB3 Propagation
Cells
SNARE
SNAP47
ATG14
autophagy
coxsackievirus B3
VP1
author_facet Pinhao Xiang
Yasir Mohamud
Honglin Luo
author_sort Pinhao Xiang
title SNAP47 Interacts with ATG14 to Promote VP1 Conjugation and CVB3 Propagation
title_short SNAP47 Interacts with ATG14 to Promote VP1 Conjugation and CVB3 Propagation
title_full SNAP47 Interacts with ATG14 to Promote VP1 Conjugation and CVB3 Propagation
title_fullStr SNAP47 Interacts with ATG14 to Promote VP1 Conjugation and CVB3 Propagation
title_full_unstemmed SNAP47 Interacts with ATG14 to Promote VP1 Conjugation and CVB3 Propagation
title_sort snap47 interacts with atg14 to promote vp1 conjugation and cvb3 propagation
publisher MDPI AG
series Cells
issn 2073-4409
publishDate 2021-08-01
description Coxsackievirus B3 (CVB3), an enterovirus (EV) in the family of <i>Picornaviridae</i>, is a global human pathogen for which effective antiviral treatments and vaccines are lacking. Previous research demonstrated that EV-D68 downregulated the membrane fusion protein SNAP47 (synaptosome associated protein 47) and SNAP47 promoted EV-D68 replication via regulating autophagy. In the current study, we investigated the interplay between CVB3 and cellular SNAP47 using HEK293T/HeLa cell models. We showed that, upon CVB3 infection, protein levels of SNAP47 decreased independent of the activity of virus-encoded proteinase 3C. We further demonstrated that the depletion of SNAP47 inhibited CVB3 infection, indicating a pro-viral function of SNAP47. Moreover, we found that SNAP47 co-localizes with the autophagy-related protein ATG14 on the cellular membrane fractions together with viral capsid protein VP1, and expression of SNAP47 or ATG14 enhanced VP1 conjugation. Finally, we revealed that disulfide interactions had an important role in strengthening VP1 conjugation. Collectively, our study elucidated a mechanism by which SNAP47 and ATG14 promoted CVB3 propagation through facilitating viral capsid assembly.
topic SNARE
SNAP47
ATG14
autophagy
coxsackievirus B3
VP1
url https://www.mdpi.com/2073-4409/10/8/2141
work_keys_str_mv AT pinhaoxiang snap47interactswithatg14topromotevp1conjugationandcvb3propagation
AT yasirmohamud snap47interactswithatg14topromotevp1conjugationandcvb3propagation
AT honglinluo snap47interactswithatg14topromotevp1conjugationandcvb3propagation
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