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RTEL1 Regulates G4/R-Loops to Avert Replication-Transcription Collisions

Regulator of telomere length 1 (RTEL1) is an essential helicase that maintains telomere integrity and facilitates DNA replication. The source of replication stress in Rtel1-deficient cells remains unclear. Here, we report that loss of RTEL1 confers extensive transcriptional changes independent of it...

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Autores principales: Kotsantis, Panagiotis, Segura-Bayona, Sandra, Margalef, Pol, Marzec, Paulina, Ruis, Phil, Hewitt, Graeme, Bellelli, Roberto, Patel, Harshil, Goldstone, Robert, Poetsch, Anna R., Boulton, Simon J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7773548/
https://www.ncbi.nlm.nih.gov/pubmed/33357438
http://dx.doi.org/10.1016/j.celrep.2020.108546
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author Kotsantis, Panagiotis
Segura-Bayona, Sandra
Margalef, Pol
Marzec, Paulina
Ruis, Phil
Hewitt, Graeme
Bellelli, Roberto
Patel, Harshil
Goldstone, Robert
Poetsch, Anna R.
Boulton, Simon J.
author_facet Kotsantis, Panagiotis
Segura-Bayona, Sandra
Margalef, Pol
Marzec, Paulina
Ruis, Phil
Hewitt, Graeme
Bellelli, Roberto
Patel, Harshil
Goldstone, Robert
Poetsch, Anna R.
Boulton, Simon J.
author_sort Kotsantis, Panagiotis
collection PubMed
description Regulator of telomere length 1 (RTEL1) is an essential helicase that maintains telomere integrity and facilitates DNA replication. The source of replication stress in Rtel1-deficient cells remains unclear. Here, we report that loss of RTEL1 confers extensive transcriptional changes independent of its roles at telomeres. The majority of affected genes in Rtel1(−/−) cells possess G-quadruplex (G4)-DNA-forming sequences in their promoters and are similarly altered at a transcriptional level in wild-type cells treated with the G4-DNA stabilizer TMPyP4 (5,10,15,20-Tetrakis-(N-methyl-4-pyridyl)porphine). Failure to resolve G4-DNAs formed in the displaced strand of RNA-DNA hybrids in Rtel1(−/−) cells is suggested by increased R-loops and elevated transcription-replication collisions (TRCs). Moreover, removal of R-loops by RNaseH1 overexpression suppresses TRCs and alleviates the global replication defects observed in Rtel1(−/−) and Rtel1(PIP_box) knockin cells and in wild-type cells treated with TMPyP4. We propose that RTEL1 unwinds G4-DNA/R-loops to avert TRCs, which is important to prevent global deregulation in both transcription and DNA replication.
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spelling pubmed-77735482021-01-05 RTEL1 Regulates G4/R-Loops to Avert Replication-Transcription Collisions Kotsantis, Panagiotis Segura-Bayona, Sandra Margalef, Pol Marzec, Paulina Ruis, Phil Hewitt, Graeme Bellelli, Roberto Patel, Harshil Goldstone, Robert Poetsch, Anna R. Boulton, Simon J. Cell Rep Article Regulator of telomere length 1 (RTEL1) is an essential helicase that maintains telomere integrity and facilitates DNA replication. The source of replication stress in Rtel1-deficient cells remains unclear. Here, we report that loss of RTEL1 confers extensive transcriptional changes independent of its roles at telomeres. The majority of affected genes in Rtel1(−/−) cells possess G-quadruplex (G4)-DNA-forming sequences in their promoters and are similarly altered at a transcriptional level in wild-type cells treated with the G4-DNA stabilizer TMPyP4 (5,10,15,20-Tetrakis-(N-methyl-4-pyridyl)porphine). Failure to resolve G4-DNAs formed in the displaced strand of RNA-DNA hybrids in Rtel1(−/−) cells is suggested by increased R-loops and elevated transcription-replication collisions (TRCs). Moreover, removal of R-loops by RNaseH1 overexpression suppresses TRCs and alleviates the global replication defects observed in Rtel1(−/−) and Rtel1(PIP_box) knockin cells and in wild-type cells treated with TMPyP4. We propose that RTEL1 unwinds G4-DNA/R-loops to avert TRCs, which is important to prevent global deregulation in both transcription and DNA replication. Cell Press 2020-12-22 /pmc/articles/PMC7773548/ /pubmed/33357438 http://dx.doi.org/10.1016/j.celrep.2020.108546 Text en © 2020 The Author(s) http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Kotsantis, Panagiotis
Segura-Bayona, Sandra
Margalef, Pol
Marzec, Paulina
Ruis, Phil
Hewitt, Graeme
Bellelli, Roberto
Patel, Harshil
Goldstone, Robert
Poetsch, Anna R.
Boulton, Simon J.
RTEL1 Regulates G4/R-Loops to Avert Replication-Transcription Collisions
title RTEL1 Regulates G4/R-Loops to Avert Replication-Transcription Collisions
title_full RTEL1 Regulates G4/R-Loops to Avert Replication-Transcription Collisions
title_fullStr RTEL1 Regulates G4/R-Loops to Avert Replication-Transcription Collisions
title_full_unstemmed RTEL1 Regulates G4/R-Loops to Avert Replication-Transcription Collisions
title_short RTEL1 Regulates G4/R-Loops to Avert Replication-Transcription Collisions
title_sort rtel1 regulates g4/r-loops to avert replication-transcription collisions
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7773548/
https://www.ncbi.nlm.nih.gov/pubmed/33357438
http://dx.doi.org/10.1016/j.celrep.2020.108546
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