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Results for "

H2AX

" in MedChemExpress (MCE) Product Catalog:

28

Inhibitors & Agonists

2

Natural
Products

6

Antibodies

3

Oligonucleotides

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-122181B
    OTS186935 hydrochloride
    3 Publications Verification

    Histone Methyltransferase Cancer
    OTS186935 hydrochloride is a potent protein methyltransferase SUV39H2 inhibitor with an IC50 of 6.49 nM. OTS186935 hydrochloride shows significant inhibition of tumor growth in mouse xenograft models without any detectable toxicity. OTS193320 hydrochloride regulates the production of γ-H2AX in cancer cells .
    OTS186935 hydrochloride
  • HY-122181
    OTS186935
    3 Publications Verification

    Histone Methyltransferase Cancer
    OTS186935 is a potent protein methyltransferase SUV39H2 inhibitor with an IC50 of 6.49 nM. OTS186935 shows significant inhibition of tumor growth in mouse xenograft models without any detectable toxicity. OTS193320 regulates the production of γ-H2AX in cancer cells .
    OTS186935
  • HY-123834
    FEN1-IN-1
    5+ Cited Publications

    FLAP ATM/ATR Cancer
    FEN1-IN-1 (compound 1) is a small molecule flap endonuclease 1 (FEN1) inhibitor with antitumor activity. FEN1-IN-1 binds to the active site of FEN1 and partly achieves inhibition by the co-ordination of Mg 2+ ions. FEN1-IN-1 initiaties a DNA damage response and activates the ATM checkpoint signalling pathway, the phosphorylation of histone H2AX and the ubiquitination of FANCD2 in mammalian cells. FEN1-IN-1 is promising for research of cancers .
    FEN1-IN-1
  • HY-12037A
    Rigosertib
    5+ Cited Publications

    ON-01910

    Polo-like Kinase (PLK) PI3K Apoptosis Cancer
    Rigosertib (ON-01910) is a multi-kinase inhibitor and a selective anti-cancer agent, which induces apoptosis by inhibition the PI3 kinase/Akt pathway, promots the phosphorylation of histone H2AX and induces G2/M arrest in cell cycle [2]. Rigosertib is a selective and non-ATP-competitive inhibitor of PLK1 with an IC50 of 9 nM .
    Rigosertib
  • HY-RS05957

    Small Interfering RNA (siRNA) Others

    H2AX Human Pre-designed siRNA Set A contains three designed siRNAs for H2AX gene (Human), as well as a negative control, a positive control, and a FAM-labeled negative control.

    H2AX Human Pre-designed siRNA Set A
    H2AX Human Pre-designed siRNA Set A
  • HY-RS16644

    Small Interfering RNA (siRNA) Others

    H2ax Mouse Pre-designed siRNA Set A contains three designed siRNAs for H2ax gene (Mouse), as well as a negative control, a positive control, and a FAM-labeled negative control.

    H2ax Mouse Pre-designed siRNA Set A
    H2ax Mouse Pre-designed siRNA Set A
  • HY-RS23078

    Small Interfering RNA (siRNA) Others

    H2ax Rat Pre-designed siRNA Set A contains three designed siRNAs for H2ax gene (Rat), as well as a negative control, a positive control, and a FAM-labeled negative control.

    H2ax Rat Pre-designed siRNA Set A
    H2ax Rat Pre-designed siRNA Set A
  • HY-121777

    DNA/RNA Synthesis Cancer
    SFOM-0046 arrests cell cycle in S-phase and causes DNA replication stress leading to the phosphorylation of H2AX into γ-H2AX. SFOM-0046 induces DNA damages. SFOM-0046 is a potent anticancer agent .
    SFOM-0046
  • HY-122181A

    Histone Methyltransferase Cancer
    OTS186935 trihydrochloride is a protein methyltransferase SUV39H2 inhibitor with an IC50 of 6.49 nM. OTS186935 trihydrochloride shows significant inhibition of tumor growth in mouse xenograft models without any detectable toxicity. OTS186935 trihydrochloride regulates the production of γ-H2AX in cancer cells .
    OTS186935 trihydrochloride
  • HY-162985

    CDK Cancer
    JHD205 is a CDK4/6 inhibitor that induces apoptosis and DNA damage. JHD205 inhibits DNA repair by upregulating Caspase3 and p-H2AX. JHD205 has superior potency to Abemaciclib (HY-16297A) in a xenograft chick embryo breast cancer model. .
    JHD205
  • HY-168877

    MDM-2/p53 Reactive Oxygen Species (ROS) Apoptosis Caspase PARP Bcl-2 Family Cancer
    FMP is a Platinum(IV) complexe. FMP significantly upregulates the expression of γ-H2AX and p53. FMP increases the production of ROS. FMP markedly upregulates the expressions of Apoptosis-related proteins (DR5, Fas, caspase-8, Cyt-c, caspase-3, cleaved-PARP1, Bax). FMP shows antiproliferative activity against breast cancer .
    FMP
  • HY-12037
    Rigosertib sodium
    5+ Cited Publications

    ON-01910 sodium

    Polo-like Kinase (PLK) PI3K Apoptosis Cancer
    Rigosertib sodium (ON-01910 sodium) is a multi-kinase inhibitor and a selective anti-cancer agent, which induces apoptosis by inhibition the PI3K/Akt pathway, promotes the phosphorylation of histone H2AX and induces G2/M arrest in cell cycle [2]. Rigosertib sodium is a selective and non-ATP-competitive inhibitor of PLK1 with an IC50 of 9 nM .
    Rigosertib sodium
  • HY-174989

    ATM/ATR Apoptosis Cancer
    ATM-IN-2 is a selective and orally active ATM inhibitor with an IC50 of 4 nM. ATM-IN-2 exhibits excellent kinase selectivity (>700-fold over PIKK family members). ATM-IN-2 exerts its anti-tumor effect by inhibiting ATM phosphorylation and the downstream signaling pathways (p53, H2AX), and promotes cell apoptosis. ATM-IN-2 can be used for the study of chemosensitizer candidate such as colon cancer .
    ATM-IN-2
  • HY-122182

    Histone Methyltransferase Apoptosis Cancer
    OTS193320, a imidazo[1,2-a]pyridine compound, is a SUV39H2 methyltransferase activity inhibitor. OTS193320 decreases global histone H3 lysine 9 tri-methylation levels in breast cancer cells and triggers apoptotic cell death. Combination of OTS193320 with Doxorubicin (DOX; HY-15142A) results in reduction of γ-H2AX levels as well as cancer cell viability compared to a single agent OTS193320 or DOX .
    OTS193320
  • HY-117688

    HDAC Topoisomerase Apoptosis Cancer
    WJ35435 is a dual-targeted anticancer hybrid that induces anti-HDAC (in particular HDAC1 and HDAC6) and anti-topoisomerase I activities that causes DNA damage associated with a low DNA repair capability and induces cell cycle arrest at G1- and G2-phase to apoptosis. WJ35435 induces histone H3 acetylation and phosphorylation, α-tubulin acetylation and γ-H2AX formation to achieve anti-HDAC effect. WJ35435 is promising for research of cancer .
    WJ35435
  • HY-N0316
    Mollugin
    2 Publications Verification

    JAK NF-κB Reactive Oxygen Species (ROS) Apoptosis VEGFR c-Myc Cancer
    Mollugin is an orally active and potent NF-κB inhibitor. Mollugin induces S-phase arrest of HepG2 cells, and increased intracellular reactive oxygen species (ROS) levels. Mollugin induces DNA damage in HepG2 cells, as well as an increase in the expression of p-H2AX. Mollugin shows anti-cancer effect by inhibiting TNF-α-induced NF-κB activation. Mollugin enhances the osteogenic action of BMP-2 (bone morphogenetic protein 2) via the p38-Smad signaling pathway [2] .
    Mollugin
  • HY-145289

    Apoptosis Cancer
    Antitumor agent-37 possesses potent anti-proliferative and anti-metastasis activities. Antitumor agent-37 induces serious DNA damage and further leads to high expression of γ-H2AX and p53. Antitumor agent-37 promotes apoptosis of tumor cells through mitochondrial apoptotic pathway Bcl-2/Bax/caspase3. Antitumor agent-37 significantly improves immune response through restraining the expression of PD-L1 to increase CD3+ and CD8+ T infiltrating cells in tumor tissues .
    Antitumor agent-37
  • HY-145288

    Apoptosis Cancer
    Antitumor agent-36 possesses potent anti-proliferative and anti-metastasis activities. Antitumor agent-36 induces serious DNA damage and further leads to high expression of γ-H2AX and p53. Antitumor agent-36 promotes apoptosis of tumor cells through mitochondrial apoptotic pathway Bcl-2/Bax/caspase3. Antitumor agent-36 significantly improves immune response through restraining the expression of PD-L1 to increase CD3+ and CD8+ T infiltrating cells in tumor tissues .
    Antitumor agent-36
  • HY-N0316R

    JAK Reference Standards NF-κB Reactive Oxygen Species (ROS) Apoptosis VEGFR c-Myc Cancer
    Mollugin (Standard) is the analytical standard of Mollugin. This product is intended for research and analytical applications. Mollugin is an orally active and potent NF-κB inhibitor. Mollugin induces S-phase arrest of HepG2 cells, and increased intracellular reactive oxygen species (ROS) levels. Mollugin induces DNA damage in HepG2 cells, as well as an increase in the expression of p-H2AX. Mollugin shows anti-cancer effect by inhibiting TNF-α-induced NF-κB activation. Mollugin enhances the osteogenic action of BMP-2 (bone morphogenetic protein 2) via the p38-Smad signaling pathway [2] .
    Mollugin (Standard)
  • HY-117693
    (E/Z)-Mirin
    5+ Cited Publications

    ATM/ATR Cancer
    (E/Z)-Mirin is a mixture of (E)-Mirin and Mirin ((Z)-Mirin) (HY-19959) configurations. Among them, Mirin is an inhibitor of MRN (Mre11-Rad50-Nbs1). Mirin prevents MRN-dependent ATM activation without affecting ATM protein kinase activity [2].
    (E/Z)-Mirin
  • HY-101089
    RHPS4
    4 Publications Verification

    Telomerase Apoptosis Cancer
    RHPS4 is a potent telomerase inhibitor (IC50 = 0.33 μM). RHPS4 is a DNA damage inducer [2].
    RHPS4
  • HY-103241
    Ro 90-7501
    3 Publications Verification

    Amyloid-β ATM/ATR Phosphatase Apoptosis Neurological Disease Cancer
    Ro 90-7501 is an amyloid β42 (Aβ42) fibril assembly inhibitor that reduces 42-induced cytotoxicity (EC50 of 2 μM). Ro 90-7501 inhibits ATM phosphorylation and DNA repair. RO 90-7501 selectively enhances toll-like receptor 3 (TLR3) and RIG-I-like receptor (RLR) ligand-induced IFN-β gene expression and antiviral response [2]. Ro 90-7501 also inhibits protein phosphatase 5 (PP5) in a TPR-dependent manner . Ro 90-7501 has significant radiosensitizing effects on cervical cancer cells .
    Ro 90-7501
  • HY-18174H

    LY2606368 lactate

    Checkpoint Kinase (Chk) Apoptosis DNA/RNA Synthesis Cancer
    Prexasertib lactate (LY2606368 lactate) is the lactate form of Prexasertib (HY-18174). Prexasertib lactate is a selective, ATP-competitive second-generation checkpoint kinase 1 (CHK1) inhibitor with a Ki of 0.9 nM and an IC50 of <1 nM. Prexasertib lactate inhibits CHK2 (IC50=8 nM) and RSK1 (IC50=9 nM). Prexasertib lactate causes double-stranded DNA breakage and replication catastrophe resulting in apoptosis. Prexasertib lactate shows potent anti-tumor activity [2].
    Prexasertib lactate
  • HY-18174A
    Prexasertib dihydrochloride
    Maximum Cited Publications
    28 Publications Verification

    LY2606368 dihydrochloride

    Checkpoint Kinase (Chk) Apoptosis Cancer
    Prexasertib dihydrochloride (LY2606368 dihydrochloride) is a selective, ATP-competitive second-generation checkpoint kinase 1 (CHK1) inhibitor with a Ki of 0.9 nM and an IC50 of <1 nM. Prexasertib dihydrochloride inhibits CHK2 (IC50=8 nM) and RSK1 (IC50=9 nM). Prexasertib dihydrochloride causes double-stranded DNA breakage and replication catastrophe resulting in apoptosis. Prexasertib dihydrochloride shows potent anti-tumor activity [2].
    Prexasertib dihydrochloride
  • HY-18174B

    LY2606368 Mesylate Hydrate; LY2940930

    Checkpoint Kinase (Chk) Apoptosis Cancer
    Prexasertib Mesylate Hydrate (LY2606368 Mesylate Hydrate) is a selective, ATP-competitive second-generation checkpoint kinase 1 (CHK1) inhibitor with a Ki of 0.9 nM and an IC50 of <1 nM. Prexasertib Mesylate Hydrate inhibits CHK2 (IC50=8 nM) and RSK1 (IC50=9 nM). Prexasertib Mesylate Hydrate causes double-stranded DNA breakage and replication catastrophe resulting in apoptosis. Prexasertib Mesylate Hydrate shows potent anti-tumor activity [2].
    Prexasertib Mesylate Hydrate
  • HY-18174E
    Prexasertib dimesylate
    Maximum Cited Publications
    28 Publications Verification

    LY2606368 dimesylate

    Checkpoint Kinase (Chk) Apoptosis Cancer
    Prexasertib dimesylate (LY2606368 dimesylate) is a selective, ATP-competitive second-generation checkpoint kinase 1 (CHK1) inhibitor with a Ki of 0.9 nM and an IC50 of <1 nM. Prexasertib dimesylate inhibits CHK2 (IC50=8 nM) and RSK1 (IC50=9 nM). Prexasertib dimesylate causes double-stranded DNA breakage and replication catastrophe resulting in apoptosis. Prexasertib dimesylate shows potent anti-tumor activity [2].
    Prexasertib dimesylate
  • HY-18174
    Prexasertib
    Maximum Cited Publications
    28 Publications Verification

    LY2606368

    Checkpoint Kinase (Chk) Apoptosis Cancer
    Prexasertib (LY2606368) is a selective, ATP-competitive second-generation checkpoint kinase 1 (CHK1) inhibitor with a Ki of 0.9 nM and an IC50 of <1 nM. Prexasertib inhibits CHK2 (IC50=8 nM) and RSK1 (IC50=9 nM). Prexasertib causes double-stranded DNA breakage and replication catastrophe resulting in apoptosis. Prexasertib shows potent anti-tumor activity [2].
    Prexasertib
  • HY-18174C

    LY2606368 mesylate

    Checkpoint Kinase (Chk) DNA/RNA Synthesis Apoptosis Cancer
    Prexasertib mesylate (LY2606368 mesylate) is a selective, ATP-competitive second-generation checkpoint kinase 1 (CHK1) inhibitor with a Ki of 0.9 nM and an IC50 of <1 nM. Prexasertib mesylate inhibits CHK2 (IC50=8 nM) and RSK1 (IC50=9 nM). Prexasertib mesylate causes double-stranded DNA breakage and replication catastrophe resulting in apoptosis. Prexasertib mesylate shows potent anti-tumor activity [2].
    Prexasertib mesylate

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