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David Cortez

Showing results (111-120 of 122) with videos related to

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Biorxiv : the Preprint Server for Biology|November 19, 2025
Structural basis for fork reversal and RAD51 regulation by the SCF ubiquitin ligase complex of F-box helicase 1Briana H Greer, Javier Mendia-García, Elwood A Mullins, et al.
Nucleic Acids Research|June 20, 2018
Perturbing cohesin dynamics drives MRE11 nuclease-dependent replication fork slowingDenisse Carvajal-Maldonado, Andrea K Byrum, Jessica Jackson, et al.
Journal of Medicinal Chemistry|February 5, 2014
Discovery of a potent stapled helix peptide that binds to the 70N domain of replication protein AAndreas O Frank, Bhavatarini Vangamudi, Michael D Feldkamp, et al.
Science (New York, N.Y.)|August 25, 2018
An intrinsic S/G<sub>2</sub> checkpoint enforced by ATRJoshua C Saldivar, Stephan Hamperl, Michael J Bocek, et al.
The Journal of Clinical Investigation|August 8, 2013
HDAC3 is essential for DNA replication in hematopoietic progenitor cellsAlyssa R Summers, Melissa A Fischer, Kristy R Stengel, et al.
Molecular Cell|September 9, 2017
Replication Fork Slowing and Reversal upon DNA Damage Require PCNA Polyubiquitination and ZRANB3 DNA Translocase ActivityMarko Vujanovic, Jana Krietsch, Maria Chiara Raso, et al.
Plos One|July 30, 2013
Inhibition of histone deacetylase 3 causes replication stress in cutaneous T cell lymphomaChristina E Wells, Srividya Bhaskara, Kristy R Stengel, et al.
Molecular Cell|August 14, 2024
HLTF resolves G4s and promotes G4-induced replication fork slowing to maintain genome stabilityGongshi Bai, Theresa Endres, Ulrike Kühbacher, et al.
Nature|July 23, 2016
Replication fork stability confers chemoresistance in BRCA-deficient cellsArnab Ray Chaudhuri, Elsa Callen, Xia Ding, et al.
Nature|September 30, 2016
Erratum: Replication fork stability confers chemoresistance in BRCA-deficient cellsArnab Ray Chaudhuri, Elsa Callen, Xia Ding, et al.
Pageof 13

Showing results (111-120 of 122) with videos related to

Sort By:
Pageof 13
Biorxiv : the Preprint Server for Biology|November 19, 2025
Structural basis for fork reversal and RAD51 regulation by the SCF ubiquitin ligase complex of F-box helicase 1Briana H Greer, Javier Mendia-García, Elwood A Mullins, et al.
Nucleic Acids Research|June 20, 2018
Perturbing cohesin dynamics drives MRE11 nuclease-dependent replication fork slowingDenisse Carvajal-Maldonado, Andrea K Byrum, Jessica Jackson, et al.
Journal of Medicinal Chemistry|February 5, 2014
Discovery of a potent stapled helix peptide that binds to the 70N domain of replication protein AAndreas O Frank, Bhavatarini Vangamudi, Michael D Feldkamp, et al.
Science (New York, N.Y.)|August 25, 2018
An intrinsic S/G<sub>2</sub> checkpoint enforced by ATRJoshua C Saldivar, Stephan Hamperl, Michael J Bocek, et al.
The Journal of Clinical Investigation|August 8, 2013
HDAC3 is essential for DNA replication in hematopoietic progenitor cellsAlyssa R Summers, Melissa A Fischer, Kristy R Stengel, et al.
Molecular Cell|September 9, 2017
Replication Fork Slowing and Reversal upon DNA Damage Require PCNA Polyubiquitination and ZRANB3 DNA Translocase ActivityMarko Vujanovic, Jana Krietsch, Maria Chiara Raso, et al.
Plos One|July 30, 2013
Inhibition of histone deacetylase 3 causes replication stress in cutaneous T cell lymphomaChristina E Wells, Srividya Bhaskara, Kristy R Stengel, et al.
Molecular Cell|August 14, 2024
HLTF resolves G4s and promotes G4-induced replication fork slowing to maintain genome stabilityGongshi Bai, Theresa Endres, Ulrike Kühbacher, et al.
Nature|July 23, 2016
Replication fork stability confers chemoresistance in BRCA-deficient cellsArnab Ray Chaudhuri, Elsa Callen, Xia Ding, et al.
Nature|September 30, 2016
Erratum: Replication fork stability confers chemoresistance in BRCA-deficient cellsArnab Ray Chaudhuri, Elsa Callen, Xia Ding, et al.
Pageof 13