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Coxsackievirus infection induces a non-canonical autophagy independent of the ULK and PI3K complexes

Coxsackievirus B3 (CVB3) is a single-stranded positive RNA virus that usurps cellular machinery, including the evolutionarily anti-viral autophagy pathway, for productive infections. Despite the emergence of double-membraned autophagosome-like vesicles during CVB3 infection, very little is known abo...

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Autores principales: Mohamud, Yasir, Shi, Junyan, Tang, Hui, Xiang, Pinhao, Xue, Yuan Chao, Liu, Huitao, Ng, Chen Seng, Luo, Honglin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7642411/
https://www.ncbi.nlm.nih.gov/pubmed/33149253
http://dx.doi.org/10.1038/s41598-020-76227-7
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author Mohamud, Yasir
Shi, Junyan
Tang, Hui
Xiang, Pinhao
Xue, Yuan Chao
Liu, Huitao
Ng, Chen Seng
Luo, Honglin
author_facet Mohamud, Yasir
Shi, Junyan
Tang, Hui
Xiang, Pinhao
Xue, Yuan Chao
Liu, Huitao
Ng, Chen Seng
Luo, Honglin
author_sort Mohamud, Yasir
collection PubMed
description Coxsackievirus B3 (CVB3) is a single-stranded positive RNA virus that usurps cellular machinery, including the evolutionarily anti-viral autophagy pathway, for productive infections. Despite the emergence of double-membraned autophagosome-like vesicles during CVB3 infection, very little is known about the mechanism of autophagy initiation. In this study, we investigated the role of established autophagy factors in the initiation of CVB3-induced autophagy. Using siRNA-mediated gene-silencing and CRISPR-Cas9-based gene-editing in culture cells, we discovered that CVB3 bypasses the ULK1/2 and PI3K complexes to trigger autophagy. Moreover, we found that CVB3-induced LC3 lipidation occurred independent of WIPI2 and the transmembrane protein ATG9 but required components of the late-stage ubiquitin-like ATG conjugation system including ATG5 and ATG16L1. Remarkably, we showed the canonical autophagy factor ULK1 was cleaved through the catalytic activity of the viral proteinase 3C. Mutagenesis experiments identified the cleavage site of ULK1 after Q524, which separates its N-terminal kinase domain from C-terminal substrate binding domain. Finally, we uncovered PI4KIIIβ (a PI4P kinase), but not PI3P or PI5P kinases as requisites for CVB3-induced LC3 lipidation. Taken together, our studies reveal that CVB3 initiates a non-canonical form of autophagy that bypasses ULK1/2 and PI3K signaling pathways to ultimately converge on PI4KIIIβ- and ATG5–ATG12–ATG16L1 machinery.
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spelling pubmed-76424112020-11-06 Coxsackievirus infection induces a non-canonical autophagy independent of the ULK and PI3K complexes Mohamud, Yasir Shi, Junyan Tang, Hui Xiang, Pinhao Xue, Yuan Chao Liu, Huitao Ng, Chen Seng Luo, Honglin Sci Rep Article Coxsackievirus B3 (CVB3) is a single-stranded positive RNA virus that usurps cellular machinery, including the evolutionarily anti-viral autophagy pathway, for productive infections. Despite the emergence of double-membraned autophagosome-like vesicles during CVB3 infection, very little is known about the mechanism of autophagy initiation. In this study, we investigated the role of established autophagy factors in the initiation of CVB3-induced autophagy. Using siRNA-mediated gene-silencing and CRISPR-Cas9-based gene-editing in culture cells, we discovered that CVB3 bypasses the ULK1/2 and PI3K complexes to trigger autophagy. Moreover, we found that CVB3-induced LC3 lipidation occurred independent of WIPI2 and the transmembrane protein ATG9 but required components of the late-stage ubiquitin-like ATG conjugation system including ATG5 and ATG16L1. Remarkably, we showed the canonical autophagy factor ULK1 was cleaved through the catalytic activity of the viral proteinase 3C. Mutagenesis experiments identified the cleavage site of ULK1 after Q524, which separates its N-terminal kinase domain from C-terminal substrate binding domain. Finally, we uncovered PI4KIIIβ (a PI4P kinase), but not PI3P or PI5P kinases as requisites for CVB3-induced LC3 lipidation. Taken together, our studies reveal that CVB3 initiates a non-canonical form of autophagy that bypasses ULK1/2 and PI3K signaling pathways to ultimately converge on PI4KIIIβ- and ATG5–ATG12–ATG16L1 machinery. Nature Publishing Group UK 2020-11-04 /pmc/articles/PMC7642411/ /pubmed/33149253 http://dx.doi.org/10.1038/s41598-020-76227-7 Text en © The Author(s) 2020 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article's Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article's Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Mohamud, Yasir
Shi, Junyan
Tang, Hui
Xiang, Pinhao
Xue, Yuan Chao
Liu, Huitao
Ng, Chen Seng
Luo, Honglin
Coxsackievirus infection induces a non-canonical autophagy independent of the ULK and PI3K complexes
title Coxsackievirus infection induces a non-canonical autophagy independent of the ULK and PI3K complexes
title_full Coxsackievirus infection induces a non-canonical autophagy independent of the ULK and PI3K complexes
title_fullStr Coxsackievirus infection induces a non-canonical autophagy independent of the ULK and PI3K complexes
title_full_unstemmed Coxsackievirus infection induces a non-canonical autophagy independent of the ULK and PI3K complexes
title_short Coxsackievirus infection induces a non-canonical autophagy independent of the ULK and PI3K complexes
title_sort coxsackievirus infection induces a non-canonical autophagy independent of the ulk and pi3k complexes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7642411/
https://www.ncbi.nlm.nih.gov/pubmed/33149253
http://dx.doi.org/10.1038/s41598-020-76227-7
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