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G2 phase

  • Mitosis Vs. Meiosis

    Mitosis Vs. Meiosis

  • Targeting the WEE1 Kinase As a Molecular Targeted Therapy for Gastric Cancer

    Targeting the WEE1 Kinase As a Molecular Targeted Therapy for Gastric Cancer

  • The Cell Cycle & Mitosis

    The Cell Cycle & Mitosis

  • The Cell Cycle Coloring Worksheet

    The Cell Cycle Coloring Worksheet

  • Absence of a Measurable G2 Phase in Two Chinese Hamster Cell Lines (Cell Cycle/V79 Cells/Autoradiography) R

    Absence of a Measurable G2 Phase in Two Chinese Hamster Cell Lines (Cell Cycle/V79 Cells/Autoradiography) R

  • Wee1 Kinase Inhibitor AZD1775 Effectively Sensitizes Esophageal Cancer to Radiotherapy

    Wee1 Kinase Inhibitor AZD1775 Effectively Sensitizes Esophageal Cancer to Radiotherapy

  • Role of Wild Type P53 in the G2 Phase: Regulation of the G-Irradiation- Induced Delay and DNA Repair

    Role of Wild Type P53 in the G2 Phase: Regulation of the G-Irradiation- Induced Delay and DNA Repair

  • Cyclin-Dependent Kinase 6 Is the Principal Target of P27ikipl Regulation of the G1-Phase Traverse in 1,25-Dihydroxyvitamin D3-Treated HL6O Cells'

    Cyclin-Dependent Kinase 6 Is the Principal Target of P27ikipl Regulation of the G1-Phase Traverse in 1,25-Dihydroxyvitamin D3-Treated HL6O Cells'

  • Activity and Expression Pattern of Cyclin-Dependent Kinase 5 in the Embryonic Mouse Nervous System

    Activity and Expression Pattern of Cyclin-Dependent Kinase 5 in the Embryonic Mouse Nervous System

  • Downregulation of Cell Cycle and Checkpoint Genes by Class I HDAC Inhibitors Limits Synergism with G2/M Checkpoint Inhibitor MK-1775 in Bladder Cancer Cells

    Downregulation of Cell Cycle and Checkpoint Genes by Class I HDAC Inhibitors Limits Synergism with G2/M Checkpoint Inhibitor MK-1775 in Bladder Cancer Cells

  • Absence of Wee1 Ensures the Meiotic Cell Cycle in Xenopus Oocytes

    Absence of Wee1 Ensures the Meiotic Cell Cycle in Xenopus Oocytes

  • Phosphatases Reverse P53-Mediated Cell Cycle Checkpoints

    Phosphatases Reverse P53-Mediated Cell Cycle Checkpoints

  • A Haploid Genetic Screen Identifies the G1/S Regulatory Machinery As a Determinant of Wee1 Inhibitor Sensitivity

    A Haploid Genetic Screen Identifies the G1/S Regulatory Machinery As a Determinant of Wee1 Inhibitor Sensitivity

  • P53-Dependent Polyploidisation After DNA Damage in G2 Phase 2 3 Anna Middleton1, Rakesh Suman2, Peter O’Toole2, Karen Akopyan1, Arne Lindqvist1 4 5 1

    P53-Dependent Polyploidisation After DNA Damage in G2 Phase 2 3 Anna Middleton1, Rakesh Suman2, Peter O’Toole2, Karen Akopyan1, Arne Lindqvist1 4 5 1

  • Radiosensitivity and Cell Age in the Mitotic Cycle

    Radiosensitivity and Cell Age in the Mitotic Cycle

  • Milestone 6 One-Way Traffic

    Milestone 6 One-Way Traffic

  • Cyclin-Dependent Kinase 4/6 Activity Is a Critical Determinant of Pre-Replication Complexassembly

    Cyclin-Dependent Kinase 4/6 Activity Is a Critical Determinant of Pre-Replication Complexassembly

  • Ultraviolet Light-Induced G2 Phase Cell Cycle Checkpoint Blocks Cdc25-Dependent Progression Into Mitosis

    Ultraviolet Light-Induced G2 Phase Cell Cycle Checkpoint Blocks Cdc25-Dependent Progression Into Mitosis

Top View
  • The Roles of Cyclin-Dependent Kinases in Cell-Cycle Progression and Therapeutic Strategies in Human Breast Cancer
  • The Role of APC (Anaphase-Promoting Comlpex) in G2/M After DNA Damage Jinho Lee
  • Targeting the Cyclin-Dependent Kinases (CDK) 4/6 in Estrogen Receptor-Positive Breast Cancers Richard S
  • Mammalian Cell-Cycle Regulation: Several Cdks, Numerous Cyclins and Diverse Compensatory Mechanisms
  • Cell Division Hydra Top Layers = Dead Cells ●Multicellular Organisms: Are Constantly Shed –Growth
  • P53-Dependent G2 Arrest Associated with a Decrease in Cyclins A2 And
  • Cell Cycle Checkpoint Signaling Through the ATM and ATR Kinases
  • Cell Cycle: Mitosis
  • New Insights Into PARP Inhibitors' Effect on Cell Cycle and Homology-Directed DNA Damage Repair
  • The Apparent Requirement for Protein Synthesis During G2 Phase Is Due to Checkpoint Activation
  • Cycling at the Interface Between Neurodevelopment and Neurodegeneration
  • A Mitotic Topoisomerase II Checkpoint in Budding Yeast Is Required for Genome Stability but Acts Independently of Pds1/Securin
  • The Cell Cycle, Mitosis and Meiosis
  • Section 10–2 Cell Division (Pages 244–249)
  • Cell Cycle & Cell Division
  • Section Notes the Cell Division Cycle Presents an Interesting System To
  • Regulation of G2/M Transition by Inhibition of WEE1 and PKMYT1 Kinases
  • Differential Effects of Combined ATR/WEE1 Inhibition in Cancer Cells


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