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Rodrigo Bermejo

Showing results (21-30 of 31) with videos related to

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Nature Structural & Molecular Biology|January 13, 2009
SRS2 and SGS1 prevent chromosomal breaks and stabilize triplet repeats by restraining recombinationAlix Kerrest, Ranjith P Anand, Rangapriya Sundararajan, et al.
Nature Structural & Molecular Biology|March 6, 2012
Topoisomerase I poisoning results in PARP-mediated replication fork reversalArnab Ray Chaudhuri, Yoshitami Hashimoto, Raquel Herrador, et al.
Molecular Cell|August 28, 2010
Replication termination at eukaryotic chromosomes is mediated by Top2 and occurs at genomic loci containing pausing elementsDaniele Fachinetti, Rodrigo Bermejo, Andrea Cocito, et al.
Cell|November 13, 2012
Senataxin associates with replication forks to protect fork integrity across RNA-polymerase-II-transcribed genesAmaya Alzu, Rodrigo Bermejo, Martina Begnis, et al.
Cell|September 10, 2009
Genome-organizing factors Top2 and Hmo1 prevent chromosome fragility at sites of S phase transcriptionRodrigo Bermejo, Thelma Capra, Victor Gonzalez-Huici, et al.
Iscience|June 23, 2025
Loss of G1-phase CDK-inhibition biases instability between genomic regions by unevenly reducing activity among replication originsFábia Gomes, Fernando Devesa, Pilar Ayuda-Durán, et al.
The EMBO Journal|January 30, 2014
DNA bending facilitates the error-free DNA damage tolerance pathway and upholds genome integrityVictor Gonzalez-Huici, Barnabas Szakal, Madhusoodanan Urulangodi, et al.
Molecular Cell|June 27, 2017
PP2A Controls Genome Integrity by Integrating Nutrient-Sensing and Metabolic Pathways with the DNA Damage ResponseElisa Ferrari, Christopher Bruhn, Marta Peretti, et al.
Cell|July 26, 2011
The replication checkpoint protects fork stability by releasing transcribed genes from nuclear poresRodrigo Bermejo, Thelma Capra, Rachel Jossen, et al.
Molecular Cell|May 1, 2021
Checkpoint-mediated DNA polymerase ε exonuclease activity curbing counteracts resection-driven fork collapseGrazia Pellicanò, Mohammed Al Mamun, Dolores Jurado-Santiago, et al.
Pageof 4

Showing results (21-30 of 31) with videos related to

Sort By:
Pageof 4
Nature Structural & Molecular Biology|January 13, 2009
SRS2 and SGS1 prevent chromosomal breaks and stabilize triplet repeats by restraining recombinationAlix Kerrest, Ranjith P Anand, Rangapriya Sundararajan, et al.
Nature Structural & Molecular Biology|March 6, 2012
Topoisomerase I poisoning results in PARP-mediated replication fork reversalArnab Ray Chaudhuri, Yoshitami Hashimoto, Raquel Herrador, et al.
Molecular Cell|August 28, 2010
Replication termination at eukaryotic chromosomes is mediated by Top2 and occurs at genomic loci containing pausing elementsDaniele Fachinetti, Rodrigo Bermejo, Andrea Cocito, et al.
Cell|November 13, 2012
Senataxin associates with replication forks to protect fork integrity across RNA-polymerase-II-transcribed genesAmaya Alzu, Rodrigo Bermejo, Martina Begnis, et al.
Cell|September 10, 2009
Genome-organizing factors Top2 and Hmo1 prevent chromosome fragility at sites of S phase transcriptionRodrigo Bermejo, Thelma Capra, Victor Gonzalez-Huici, et al.
Iscience|June 23, 2025
Loss of G1-phase CDK-inhibition biases instability between genomic regions by unevenly reducing activity among replication originsFábia Gomes, Fernando Devesa, Pilar Ayuda-Durán, et al.
The EMBO Journal|January 30, 2014
DNA bending facilitates the error-free DNA damage tolerance pathway and upholds genome integrityVictor Gonzalez-Huici, Barnabas Szakal, Madhusoodanan Urulangodi, et al.
Molecular Cell|June 27, 2017
PP2A Controls Genome Integrity by Integrating Nutrient-Sensing and Metabolic Pathways with the DNA Damage ResponseElisa Ferrari, Christopher Bruhn, Marta Peretti, et al.
Cell|July 26, 2011
The replication checkpoint protects fork stability by releasing transcribed genes from nuclear poresRodrigo Bermejo, Thelma Capra, Rachel Jossen, et al.
Molecular Cell|May 1, 2021
Checkpoint-mediated DNA polymerase ε exonuclease activity curbing counteracts resection-driven fork collapseGrazia Pellicanò, Mohammed Al Mamun, Dolores Jurado-Santiago, et al.
Pageof 4