Cargando…

Structural basis of DNA methylation-dependent site selectivity of the Epstein–Barr virus lytic switch protein ZEBRA/Zta/BZLF1

In infected cells, Epstein–Barr virus (EBV) alternates between latency and lytic replication. The viral bZIP transcription factor ZEBRA (Zta, BZLF1) regulates this cycle by binding to two classes of ZEBRA response elements (ZREs): CpG-free motifs resembling the consensus AP-1 site recognized by cell...

Descripción completa

Detalles Bibliográficos
Autores principales: Bernaudat, Florent, Gustems, Montse, Günther, Johannes, Oliva, Mizar F, Buschle, Alexander, Göbel, Christine, Pagniez, Priscilla, Lupo, Julien, Signor, Luca, Müller, Christoph W, Morand, Patrice, Sattler, Michael, Hammerschmidt, Wolfgang, Petosa, Carlo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8754650/
https://www.ncbi.nlm.nih.gov/pubmed/34893887
http://dx.doi.org/10.1093/nar/gkab1183
_version_ 1784632316637741056
author Bernaudat, Florent
Gustems, Montse
Günther, Johannes
Oliva, Mizar F
Buschle, Alexander
Göbel, Christine
Pagniez, Priscilla
Lupo, Julien
Signor, Luca
Müller, Christoph W
Morand, Patrice
Sattler, Michael
Hammerschmidt, Wolfgang
Petosa, Carlo
author_facet Bernaudat, Florent
Gustems, Montse
Günther, Johannes
Oliva, Mizar F
Buschle, Alexander
Göbel, Christine
Pagniez, Priscilla
Lupo, Julien
Signor, Luca
Müller, Christoph W
Morand, Patrice
Sattler, Michael
Hammerschmidt, Wolfgang
Petosa, Carlo
author_sort Bernaudat, Florent
collection PubMed
description In infected cells, Epstein–Barr virus (EBV) alternates between latency and lytic replication. The viral bZIP transcription factor ZEBRA (Zta, BZLF1) regulates this cycle by binding to two classes of ZEBRA response elements (ZREs): CpG-free motifs resembling the consensus AP-1 site recognized by cellular bZIP proteins and CpG-containing motifs that are selectively bound by ZEBRA upon cytosine methylation. We report structural and mutational analysis of ZEBRA bound to a CpG-methylated ZRE (meZRE) from a viral lytic promoter. ZEBRA recognizes the CpG methylation marks through a ZEBRA-specific serine and a methylcytosine-arginine-guanine triad resembling that found in canonical methyl-CpG binding proteins. ZEBRA preferentially binds the meZRE over the AP-1 site but mutating the ZEBRA-specific serine to alanine inverts this selectivity and abrogates viral replication. Our findings elucidate a DNA methylation-dependent switch in ZEBRA’s transactivation function that enables ZEBRA to bind AP-1 sites and promote viral latency early during infection and subsequently, under appropriate conditions, to trigger EBV lytic replication by binding meZREs.
format Online
Article
Text
id pubmed-8754650
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-87546502022-01-13 Structural basis of DNA methylation-dependent site selectivity of the Epstein–Barr virus lytic switch protein ZEBRA/Zta/BZLF1 Bernaudat, Florent Gustems, Montse Günther, Johannes Oliva, Mizar F Buschle, Alexander Göbel, Christine Pagniez, Priscilla Lupo, Julien Signor, Luca Müller, Christoph W Morand, Patrice Sattler, Michael Hammerschmidt, Wolfgang Petosa, Carlo Nucleic Acids Res Structural Biology In infected cells, Epstein–Barr virus (EBV) alternates between latency and lytic replication. The viral bZIP transcription factor ZEBRA (Zta, BZLF1) regulates this cycle by binding to two classes of ZEBRA response elements (ZREs): CpG-free motifs resembling the consensus AP-1 site recognized by cellular bZIP proteins and CpG-containing motifs that are selectively bound by ZEBRA upon cytosine methylation. We report structural and mutational analysis of ZEBRA bound to a CpG-methylated ZRE (meZRE) from a viral lytic promoter. ZEBRA recognizes the CpG methylation marks through a ZEBRA-specific serine and a methylcytosine-arginine-guanine triad resembling that found in canonical methyl-CpG binding proteins. ZEBRA preferentially binds the meZRE over the AP-1 site but mutating the ZEBRA-specific serine to alanine inverts this selectivity and abrogates viral replication. Our findings elucidate a DNA methylation-dependent switch in ZEBRA’s transactivation function that enables ZEBRA to bind AP-1 sites and promote viral latency early during infection and subsequently, under appropriate conditions, to trigger EBV lytic replication by binding meZREs. Oxford University Press 2021-12-10 /pmc/articles/PMC8754650/ /pubmed/34893887 http://dx.doi.org/10.1093/nar/gkab1183 Text en © The Author(s) 2021. Published by Oxford University Press on behalf of Nucleic Acids Research. 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 reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Structural Biology
Bernaudat, Florent
Gustems, Montse
Günther, Johannes
Oliva, Mizar F
Buschle, Alexander
Göbel, Christine
Pagniez, Priscilla
Lupo, Julien
Signor, Luca
Müller, Christoph W
Morand, Patrice
Sattler, Michael
Hammerschmidt, Wolfgang
Petosa, Carlo
Structural basis of DNA methylation-dependent site selectivity of the Epstein–Barr virus lytic switch protein ZEBRA/Zta/BZLF1
title Structural basis of DNA methylation-dependent site selectivity of the Epstein–Barr virus lytic switch protein ZEBRA/Zta/BZLF1
title_full Structural basis of DNA methylation-dependent site selectivity of the Epstein–Barr virus lytic switch protein ZEBRA/Zta/BZLF1
title_fullStr Structural basis of DNA methylation-dependent site selectivity of the Epstein–Barr virus lytic switch protein ZEBRA/Zta/BZLF1
title_full_unstemmed Structural basis of DNA methylation-dependent site selectivity of the Epstein–Barr virus lytic switch protein ZEBRA/Zta/BZLF1
title_short Structural basis of DNA methylation-dependent site selectivity of the Epstein–Barr virus lytic switch protein ZEBRA/Zta/BZLF1
title_sort structural basis of dna methylation-dependent site selectivity of the epstein–barr virus lytic switch protein zebra/zta/bzlf1
topic Structural Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8754650/
https://www.ncbi.nlm.nih.gov/pubmed/34893887
http://dx.doi.org/10.1093/nar/gkab1183
work_keys_str_mv AT bernaudatflorent structuralbasisofdnamethylationdependentsiteselectivityoftheepsteinbarrviruslyticswitchproteinzebraztabzlf1
AT gustemsmontse structuralbasisofdnamethylationdependentsiteselectivityoftheepsteinbarrviruslyticswitchproteinzebraztabzlf1
AT guntherjohannes structuralbasisofdnamethylationdependentsiteselectivityoftheepsteinbarrviruslyticswitchproteinzebraztabzlf1
AT olivamizarf structuralbasisofdnamethylationdependentsiteselectivityoftheepsteinbarrviruslyticswitchproteinzebraztabzlf1
AT buschlealexander structuralbasisofdnamethylationdependentsiteselectivityoftheepsteinbarrviruslyticswitchproteinzebraztabzlf1
AT gobelchristine structuralbasisofdnamethylationdependentsiteselectivityoftheepsteinbarrviruslyticswitchproteinzebraztabzlf1
AT pagniezpriscilla structuralbasisofdnamethylationdependentsiteselectivityoftheepsteinbarrviruslyticswitchproteinzebraztabzlf1
AT lupojulien structuralbasisofdnamethylationdependentsiteselectivityoftheepsteinbarrviruslyticswitchproteinzebraztabzlf1
AT signorluca structuralbasisofdnamethylationdependentsiteselectivityoftheepsteinbarrviruslyticswitchproteinzebraztabzlf1
AT mullerchristophw structuralbasisofdnamethylationdependentsiteselectivityoftheepsteinbarrviruslyticswitchproteinzebraztabzlf1
AT morandpatrice structuralbasisofdnamethylationdependentsiteselectivityoftheepsteinbarrviruslyticswitchproteinzebraztabzlf1
AT sattlermichael structuralbasisofdnamethylationdependentsiteselectivityoftheepsteinbarrviruslyticswitchproteinzebraztabzlf1
AT hammerschmidtwolfgang structuralbasisofdnamethylationdependentsiteselectivityoftheepsteinbarrviruslyticswitchproteinzebraztabzlf1
AT petosacarlo structuralbasisofdnamethylationdependentsiteselectivityoftheepsteinbarrviruslyticswitchproteinzebraztabzlf1