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Replication Fork Activation Is Enabled by a Single-Stranded DNA Gate in CMG  Helicase - ScienceDirect
Replication Fork Activation Is Enabled by a Single-Stranded DNA Gate in CMG Helicase - ScienceDirect

CMG helicase structure and translocation mechanism. (a) Low resolution... |  Download Scientific Diagram
CMG helicase structure and translocation mechanism. (a) Low resolution... | Download Scientific Diagram

Structure and evolutionary origins of the CMG complex | SpringerLink
Structure and evolutionary origins of the CMG complex | SpringerLink

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

Mechanisms in helicase activation and analysis of the replication fork  activity and architecture – Speck Lab / DNA Replication Group – Christian  Speck
Mechanisms in helicase activation and analysis of the replication fork activity and architecture – Speck Lab / DNA Replication Group – Christian Speck

Cryo-EM structures of the eukaryotic replicative helicase bound to a  translocation substrate | Nature Communications
Cryo-EM structures of the eukaryotic replicative helicase bound to a translocation substrate | Nature Communications

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

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

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

CMG helicase and DNA polymerase ε form a functional 15-subunit holoenzyme  for eukaryotic leading-strand DNA replication | PNAS
CMG helicase and DNA polymerase ε form a functional 15-subunit holoenzyme for eukaryotic leading-strand DNA replication | 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

Mechanistic insights into how CMG helicase facilitates replication past DNA  roadblocks - ScienceDirect
Mechanistic insights into how CMG helicase facilitates replication past DNA roadblocks - ScienceDirect

Unregulated translocation of CMG helicase disrupts the replication... |  Download Scientific Diagram
Unregulated translocation of CMG helicase disrupts the replication... | Download Scientific Diagram

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

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

PDF] The human GINS complex associates with Cdc45 and MCM and is essential  for DNA replication | Semantic Scholar
PDF] The human GINS complex associates with Cdc45 and MCM and is essential for DNA replication | Semantic Scholar

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

Purification of the CMG complex. (A) Purification schematic. See the... |  Download Scientific Diagram
Purification of the CMG complex. (A) Purification schematic. See the... | Download Scientific Diagram

Closing the MCM cycle at replication termination sites | EMBO reports
Closing the MCM cycle at replication termination sites | EMBO reports

Characterization of the dimeric CMG/pre-initiation complex and its  transition into DNA replication forks | SpringerLink
Characterization of the dimeric CMG/pre-initiation complex and its transition into DNA replication forks | SpringerLink

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

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

Cryo-EM Structure of the Fork Protection Complex Bound to CMG at a  Replication Fork - ScienceDirect
Cryo-EM Structure of the Fork Protection Complex Bound to CMG at a Replication Fork - ScienceDirect

DNA unwinding mechanism of a eukaryotic replicative CMG helicase | Nature  Communications
DNA unwinding mechanism of a eukaryotic replicative CMG helicase | Nature Communications

CUL2LRR1, TRAIP and p97 control CMG helicase disassembly in the mammalian  cell cycle | EMBO reports
CUL2LRR1, TRAIP and p97 control CMG helicase disassembly in the mammalian cell cycle | EMBO reports

DNA densities and interactions with CMG in the CMG-ssDNA structure. CMG...  | Download Scientific Diagram
DNA densities and interactions with CMG in the CMG-ssDNA structure. CMG... | Download Scientific Diagram

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