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DNA binding polarity, dimerization, and ATPase ring remodeling in the CMG  helicase of the eukaryotic replisome | eLife
DNA binding polarity, dimerization, and ATPase ring remodeling in the CMG helicase of the eukaryotic replisome | eLife

Establishing the human rolling circle reaction
Establishing the human rolling circle reaction

Frontiers | The Human Replicative Helicase, the CMG Complex, as a Target  for Anti-cancer Therapy
Frontiers | The Human Replicative Helicase, the CMG Complex, as a Target for Anti-cancer Therapy

Schematic structure of the CMG helicase. (A) Two transloaction models... |  Download Scientific Diagram
Schematic structure of the CMG helicase. (A) Two transloaction models... | Download Scientific Diagram

Mcm10 regulates the assembly of the CMG complex and DNA origin melting....  | Download Scientific Diagram
Mcm10 regulates the assembly of the CMG complex and DNA origin melting.... | Download Scientific Diagram

Regulation of Minichromosome Maintenance (MCM) Helicase in Response to  Replication Stress
Regulation of Minichromosome Maintenance (MCM) Helicase in Response to Replication Stress

The CMG helicase and cancer: a tumor “engine” and weakness with missing  mutations | Oncogene
The CMG helicase and cancer: a tumor “engine” and weakness with missing mutations | Oncogene

The CMG Helicase Bypasses DNA-Protein Cross-Links to Facilitate Their  Repair - ScienceDirect
The CMG Helicase Bypasses DNA-Protein Cross-Links to Facilitate Their Repair - ScienceDirect

Structural components of the replisome. The CMG replicative helicase... |  Download Scientific Diagram
Structural components of the replisome. The CMG replicative helicase... | Download Scientific Diagram

CMG helicase disassembly is controlled by replication fork DNA, replisome  components and a ubiquitin threshold | eLife
CMG helicase disassembly is controlled by replication fork DNA, replisome components and a ubiquitin threshold | eLife

Cancers | Free Full-Text | DNA Polymerases at the Eukaryotic Replication  Fork Thirty Years after: Connection to Cancer
Cancers | Free Full-Text | DNA Polymerases at the Eukaryotic Replication Fork Thirty Years after: Connection to Cancer

Pre‐initiation complex assembly functions as a molecular switch that splits  the Mcm2‐7 double hexamer | EMBO reports
Pre‐initiation complex assembly functions as a molecular switch that splits the Mcm2‐7 double hexamer | EMBO reports

Eukaryotic DNA replication - Wikipedia
Eukaryotic DNA replication - Wikipedia

From structure to mechanism—understanding initiation of DNA replication
From structure to mechanism—understanding initiation of DNA replication

Cdc48 and a ubiquitin ligase drive disassembly of the CMG helicase at the  end of DNA replication | Science
Cdc48 and a ubiquitin ligase drive disassembly of the CMG helicase at the end of DNA replication | Science

The EMBO Journal on Twitter: "Species-specific fine-tuning of #replication  termination: Karim Labib, Remi Sonneville & coworkers @mrcppu show role  of #replisome-associated TIMELESS-TIPIN complex and #p97 adaptor UBXN-3 in  ubiquitination and ...
The EMBO Journal on Twitter: "Species-specific fine-tuning of #replication termination: Karim Labib, Remi Sonneville & coworkers @mrcppu show role of #replisome-associated TIMELESS-TIPIN complex and #p97 adaptor UBXN-3 in ubiquitination and ...

CryoEM structures of human CMG - ATPγS - DNA and CMG - AND-1 complexes |  bioRxiv
CryoEM structures of human CMG - ATPγS - DNA and CMG - AND-1 complexes | bioRxiv

The Human Replicative Helicase, the CMG Complex, as a Target for  Anti-cancer Therapy | Semantic Scholar
The Human Replicative Helicase, the CMG Complex, as a Target for Anti-cancer Therapy | Semantic Scholar

Myc and the Replicative CMG Helicase: The Creation and Destruction of  Cancer - Reed - 2020 - BioEssays - Wiley Online Library
Myc and the Replicative CMG Helicase: The Creation and Destruction of Cancer - Reed - 2020 - BioEssays - Wiley Online Library

Myc and the Replicative CMG Helicase: The Creation and Destruction of  Cancer - Reed - 2020 - BioEssays - Wiley Online Library
Myc and the Replicative CMG Helicase: The Creation and Destruction of Cancer - Reed - 2020 - BioEssays - Wiley Online Library

Eukaryotic DNA replication - Wikipedia
Eukaryotic DNA replication - Wikipedia

Structure of eukaryotic CMG helicase at a replication fork and implications  to replisome architecture and origin initiation | PNAS
Structure of eukaryotic CMG helicase at a replication fork and implications to replisome architecture and origin initiation | PNAS

Duplex DNA engagement and RPA oppositely regulate the DNA-unwinding rate of  CMG helicase | Nature Communications
Duplex DNA engagement and RPA oppositely regulate the DNA-unwinding rate of CMG helicase | Nature Communications

Structure of eukaryotic CMG helicase at a replication fork and implications  to replisome architecture and origin initiation | PNAS
Structure of eukaryotic CMG helicase at a replication fork and implications to replisome architecture and origin initiation | PNAS

Isolation of the Cdc45/Mcm2-7/GINS (CMG) complex, a candidate for the  eukaryotic DNA replication fork helicase. - Abstract - Europe PMC
Isolation of the Cdc45/Mcm2-7/GINS (CMG) complex, a candidate for the eukaryotic DNA replication fork helicase. - Abstract - Europe PMC

Spotlight on the Replisome: Aetiology of DNA Replication-Associated Genetic  Diseases: Trends in Genetics
Spotlight on the Replisome: Aetiology of DNA Replication-Associated Genetic Diseases: Trends in Genetics

Isolation of the Cdc45 Mcm2–7 GINS (CMG) complex, a candidate for the  eukaryotic DNA replication fork helicase
Isolation of the Cdc45 Mcm2–7 GINS (CMG) complex, a candidate for the eukaryotic DNA replication fork helicase

Frontiers | The Human Replicative Helicase, the CMG Complex, as a Target  for Anti-cancer Therapy
Frontiers | The Human Replicative Helicase, the CMG Complex, as a Target for Anti-cancer Therapy

Mitotic CDK promotes replisome disassembly, fork breakage, and complex DNA  rearrangements | bioRxiv
Mitotic CDK promotes replisome disassembly, fork breakage, and complex DNA rearrangements | bioRxiv