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Pathways Recommended: Cell Cycle/DNA Damage Stem Cell/Wnt
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G2/M cell cycle checkpoint

" in MedChemExpress (MCE) Product Catalog:
Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-13902
    Berzosertib
    20+ Cited Publications

    VE-822; VX-970; M6620

    ATM/ATR Apoptosis STING Caspase Infection Metabolic Disease Cancer
    Berzosertib (VE-822) is an orally active, CNS-penetrant, and selective ATR kinase inhibitor. Berzosertib blocks ATR kinase activity, abrogates G2/M cell cycle checkpoint, impairs DNA damage repair. Berzosertib induces apoptosis, inhibnits conlony migration, inhibits cell proliferation, and activates cGAS-STING axes in cancer cells. Berzosertib can be used for the research of cancers, such as head and neck squamous cell carcinoma, and colorectal cancer .
    Berzosertib
  • HY-156916

    Microtubule‐associated serine/threonine kinase (MAST) Metabolic Disease
    WAY-230563 (ST045945) is a serine/threonine kinase inhibitor that can block CHK1/CHK2-mediated cell cycle checkpoints. WAY-230563 can induce G2/M phase arrest and DNA damage in tumor cells .
    ST045945
  • HY-178150

    Wee1 Cancer
    WEE1-IN-14 (Compound 14) is a selective WEE1 inhibitor (IC50: 0.5 nM in L-RB-FEP calculations, 1.0 nM in ADP-Glo kinase assay). Inhibition of Wee1 in cancer cells disrupts the G2-M checkpoint, removes the regulatory controls on the cell cycle, and leads to early onset of mitotic failure followed by apoptosis of tumor cells. Therefore, WEE1-IN-14 is a useful tool for studying cancer biology .
    WEE1-IN-14
  • HY-168739

    Topoisomerase Reactive Oxygen Species (ROS) Apoptosis Survivin Bcl-2 Family IAP DNA/RNA Synthesis Cancer
    Topoisomerase I inhibitor 17 (Compound 7h) is a Topoisomerase I (Top1) inhibitor. Topoisomerase I inhibitor 17 reduces DDX5 and reverses the locking of Top1 activity by DDX5. Topoisomerase I inhibitor 17 induces Top1-mediated DNA damage and promotes reactive oxygen species (ROS) production. Topoisomerase I inhibitor 17 induces Apoptosis (reduces antiapoptotic proteins XIAP, Bcl-2, Survivin and up-regulates pro-apoptotic proteins Bax, γH2AX). Topoisomerase I inhibitor 17 also blocks the progression of the G2/M checkpoint and induces cell cycle arrest. Topoisomerase I inhibitor 17 significantly inhibits colony formation and cell migration in colorectal cancer cells. Topoisomerase I inhibitor 17 effectively reduces tumors in human PDX tumor mice .
    Topoisomerase I inhibitor 17
  • HY-13902A
    Berzosertib hydrochloride
    20+ Cited Publications

    VE-822 hydrochloride; VX-970 hydrochloride; M6620 hydrochloride

    ATM/ATR Apoptosis STING Caspase Neurological Disease Cancer
    Berzosertib (VE-822) hydrochloride is an orally active, CNS-penetrant, and selective ATR kinase inhibitor. Berzosertib hydrochloride blocks ATR kinase activity, abrogates G2/M cell cycle checkpoint, impairs DNA damage repair. Berzosertib hydrochloride induces apoptosis, inhibnits conlony migration, inhibits cell proliferation, and activates cGAS-STING axes in cancer cells. Berzosertib hydrochloride can be used for the research of cancers, such as head and neck squamous cell carcinoma, and colorectal cancer .
    Berzosertib hydrochloride
  • HY-183547

    Wee1 CDK Cancer
    WEE1/PKMYT1-IN-4 is a selective WEE1/PKMYT1 inhibitor, with IC50 values of 0.185 μM and 2.2 nM for human WEE1 and PKMYT1, respectively. WEE1/PKMYT1-IN-4 inhibits phosphorylation of CDK1 at T14 and Y15, disrupting the G2/M cell cycle checkpoint. WEE1/PKMYT1-IN-4 can be used for the research of colorectal cancer and amplified breast cancer .
    WEE1/PKMYT1-IN-4
  • HY-183118

    CDK Apoptosis Neurological Disease Cancer
    CID-078 is an orally active macrocyclic cyclin A and cyclin B inhibitor. CID-078 binds cyclin hydrophobic patches, disrupting interactions of cyclin A-Cdk2 with E2F1 and cyclin B-Cdk1 with Myt1, and selectively targets RxL binding motifs to block complex-substrate interactions. CID-078 induces DNA damage, G2/M cell cycle arrest, apoptosis, mitotic catastrophe, spindle assembly checkpoint activation, and neomorphic cyclin B-CDK2 complex formation, driving synthetic lethality in E2F-driven cancer cells. CID-078 can be used for the research of small cell lung cancer, non-small cell lung cancer, triple negative breast cancer, advanced solid tumors, luminal HR +/HER 2- breast cancer, RB1-altered solid tumors, and neuroblastoma .
    CID-078

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