Author | Schilling, Eva-Maria | dc.contributor.author |
Author | Scherer, Myriam | dc.contributor.author |
Author | Rothemund, Franziska | dc.contributor.author |
Author | Stamminger, Thomas | dc.contributor.author |
Date of accession | 2021-05-25T10:23:01Z | dc.date.accessioned |
Available in OPARU since | 2021-05-25T10:23:01Z | dc.date.available |
Date of first publication | 2021-03-26 | dc.date.issued |
Abstract | Flap endonuclease 1 (FEN1) is a member of the family of structure-specific endonucleases
implicated in regulation of DNA damage response and DNA replication. So far, knowledge
on the role of FEN1 during viral infections is limited. Previous publications indicated that poxviruses
encode a conserved protein that acts in a manner similar to FEN1 to stimulate
homologous recombination, double-strand break (DSB) repair and full-size genome formation.
Only recently, cellular FEN1 has been identified as a key component for hepatitis B
virus cccDNA formation. Here, we report on a novel functional interaction between Flap
endonuclease 1 (FEN1) and the human cytomegalovirus (HCMV) immediate early protein 1
(IE1). Our results provide evidence that IE1 manipulates FEN1 in an unprecedented manner:
we observed that direct IE1 binding does not only enhance FEN1 protein stability but
also phosphorylation at serine 187. This correlates with nucleolar exclusion of FEN1 stimulating
its DSB-generating gap endonuclease activity. Depletion of FEN1 and inhibition of its
enzymatic activity during HCMV infection significantly reduced nascent viral DNA synthesis
demonstrating a supportive role for efficient HCMV DNA replication. Furthermore, our
results indicate that FEN1 is required for the formation of DSBs during HCMV infection suggesting
that IE1 acts as viral activator of FEN1 in order to re-initiate stalled replication forks.
In summary, we propose a novel mechanism of viral FEN1 activation to overcome replication
fork barriers at difficult-to-replicate sites in viral genomes | dc.description.abstract |
Language | en | dc.language.iso |
Publisher | Universität Ulm | dc.publisher |
License | CC BY 4.0 International | dc.rights |
Link to license text | https://creativecommons.org/licenses/by/4.0/ | dc.rights.uri |
Keyword | Viral replication | dc.subject |
Keyword | Immunoprecipitation | dc.subject |
Dewey Decimal Group | DDC 570 / Life sciences | dc.subject.ddc |
Dewey Decimal Group | DDC 610 / Medicine & health | dc.subject.ddc |
LCSH | DNA replication | dc.subject.lcsh |
LCSH | Phosphorylation | dc.subject.lcsh |
LCSH | Viruses Reproduction | dc.subject.lcsh |
LCSH | Transfection | dc.subject.lcsh |
LCSH | Genomics | dc.subject.lcsh |
LCSH | Small interfering RNA | dc.subject.lcsh |
LCSH | DNA repair | dc.subject.lcsh |
Title | Functional regulation of the structure-specific endonuclease FEN1 by the human cytomegalovirus protein IE1 suggests a role
for the re-initiation of stalled viral replication forks | dc.title |
Resource type | Wissenschaftlicher Artikel | dc.type |
Version | publishedVersion | dc.description.version |
DOI | http://dx.doi.org/10.18725/OPARU-37596 | dc.identifier.doi |
URN | http://nbn-resolving.de/urn:nbn:de:bsz:289-oparu-37658-2 | dc.identifier.urn |
GND | Replikation | dc.subject.gnd |
GND | Phosphorylierung | dc.subject.gnd |
GND | Transfektion | dc.subject.gnd |
GND | Genomik | dc.subject.gnd |
GND | DNS-Reparatur | dc.subject.gnd |
Institution | UKU. Institut für Virologie | uulm.affiliationSpecific |
Peer review | ja | uulm.peerReview |
DCMI Type | Text | uulm.typeDCMI |
Category | Publikationen | uulm.category |
DOI of original publication | 10.1371/journal.ppat.1009460 | dc.relation1.doi |
Source - Title of source | PLoS Pathogens | source.title |
Source - Place of publication | Public Library of Science | source.publisher |
Source - Volume | 17 | source.volume |
Source - Issue | 3 | source.issue |
Source - Year | 2021 | source.year |
Source - Article number | e1009460 | source.articleNumber |
Source - ISSN | 1553-7366 | source.identifier.issn |
Source - eISSN | 1553-7374 | source.identifier.eissn |
Bibliography | uulm | uulm.bibliographie |
Is Supplemented By | https://journals.plos.org/plospathogens/article?id=10.1371/journal.ppat.1009460#sec031 | dc.relation.isSupplementedBy |
xmlui.metadata.uulm.OAfunding | Open-Access-Förderung durch die Medizinische Fakultät der Universität Ulm | uulm.OAfunding |