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Editorial Note: Reoviruses hijack the SMARCB1-MYC transcriptional regulation complex to activate autophagy for persistent viral infection in leafhopper vector

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Published in:PLoS Pathogens
Format: Online Article RSS Article
Published: 2026
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container_title PLoS Pathogens
description
discipline_display Microbiology
discipline_facet Microbiology
format Online Article
RSS Article
genre Journal Article
id rss_article:91203
institution FRELIP
journal_source_facet PLoS Pathogens
last_indexed 2026-06-20T21:44:45.448Z
publishDate 2026
publishDateSort 2026
record_format rss_article
spellingShingle Editorial Note: Reoviruses hijack the SMARCB1-MYC transcriptional regulation complex to activate autophagy for persistent viral infection in leafhopper vector
Microbiology
General
Microbiology
sub_discipline_display General
sub_discipline_facet General
subject_display Microbiology
General
Microbiology
subject_facet Microbiology
General
Microbiology
title Editorial Note: Reoviruses hijack the SMARCB1-MYC transcriptional regulation complex to activate autophagy for persistent viral infection in leafhopper vector
title_alt Nota editorial: Los reovirus secuestran el complejo de regulación transcripcional SMARCB1-MYC para activar la autofagia para la infección viral persistente en el vector saltahojas
Note éditoriale : Les réovirus détournent le complexe de régulation transcriptionnelle SMARCB1-MYC pour activer l'autophagie en vue d'une infection virale persistante chez le vecteur cicadelle
Nota Editorial: Reovírus sequestram o complexo de regulação transcricional SMARCB1-MYC para ativar a autofagia para infecção viral persistente no vetor cigarrinha
title_auth Editorial Note: Reoviruses hijack the SMARCB1-MYC transcriptional regulation complex to activate autophagy for persistent viral infection in leafhopper vector
title_es_txt Nota editorial: Los reovirus secuestran el complejo de regulación transcripcional SMARCB1-MYC para activar la autofagia para la infección viral persistente en el vector saltahojas
title_fr_txt Note éditoriale : Les réovirus détournent le complexe de régulation transcriptionnelle SMARCB1-MYC pour activer l'autophagie en vue d'une infection virale persistante chez le vecteur cicadelle
title_full Editorial Note: Reoviruses hijack the SMARCB1-MYC transcriptional regulation complex to activate autophagy for persistent viral infection in leafhopper vector
title_fullStr Editorial Note: Reoviruses hijack the SMARCB1-MYC transcriptional regulation complex to activate autophagy for persistent viral infection in leafhopper vector
title_full_unstemmed Editorial Note: Reoviruses hijack the SMARCB1-MYC transcriptional regulation complex to activate autophagy for persistent viral infection in leafhopper vector
title_pt_txt Nota Editorial: Reovírus sequestram o complexo de regulação transcricional SMARCB1-MYC para ativar a autofagia para infecção viral persistente no vetor cigarrinha
title_short Editorial Note: Reoviruses hijack the SMARCB1-MYC transcriptional regulation complex to activate autophagy for persistent viral infection in leafhopper vector
title_sort editorial note: reoviruses hijack the smarcb1-myc transcriptional regulation complex to activate autophagy for persistent viral infection in leafhopper vector
topic Microbiology
General
Microbiology
url https://journals.plos.org/plospathogens/article?id=10.1371/journal.ppat.1014318