- Signaling Pathways
- Apoptosis
- MDM-2/p53
MDM-2/p53
The p53 tumor suppressor is a principal mediator of growth arrest, senescence, and apoptosis in response to a broad array of cellular damage. p53 is a short-lived protein that is maintained at low, often undetectable, levels in normal cells. Under stress conditions, the p53 protein accumulates in the cell, binds in its tetrameric form to p53-response elements and induces the transcription of various genes.
MDM-2 is transcriptionally activated by p53 and MDM-2, in turn, inhibits p53 activity in several ways. MDM-2 binds to the p53 transactivation domain and thereby inhibits p53-mediated transactivation. MDM-2 also contains a signal sequence that is similar to the nuclear export signal of various viral proteins and, after binding to p53, it induces its nuclear export. As p53 is a transcription factor, it needs to be in the nucleus to be able to access the DNA; its transport to the cytoplasm by MDM-2 prevents this. Finally, MDM-2 is a ubiquitin ligase, so is able to target p53 for degradation by the proteasome.
In many tumors p53 is inactivated by the overexpression of the negative regulators MDM2 and MDM4 or by the loss of activity of the MDM2 inhibitor ARF. The pathway can be reactivated in these tumors by small molecules that inhibit the interaction of MDM2 and/or MDM4 with p53. Such molecules are now in clinical trials.
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MDM-2/p53 Signaling Pathway
- MDM2/4-p53-IN-3
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VEGFR-2-IN-23
0 ImagesCat. No.: HY-149024CAS No.: 2411174-53-1VEGFR-2-IN-23 (compound 11b) is a potent and selective VEGFR-2 inhibitor with an IC50 value of 0.34 nM. VEGFR-2-IN-23 shows antitumor activity. VEGFR-2-IN-23 induces apoptosis and cell cycle arrest at G1 phase. -
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Diuron (Standard)
0 ImagesDiuron (Standard) is the analytical standard of Diuron (HY-B0860). This product is intended for research and analytical applications. Diuron is an orally active phenylurea herbicide. Diuron inhibits photosynthesis in plants by blocking the formation of ATP and NADH. Diuron increases the production of ROS. Diuron increases expression of p53 in certain cell lines. Diuron has herbicidal activity against annual and perennial broadleaf weeds and grass weeds. Diuron promotes DMBA/BBN-induced bladder cancer. Diuron can be used in breast cancer research. -
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p53 Bipartite NLS
0 ImagesCat. No.: HY-P11947CAS No.: 254103-71-4p53 Bipartite NLS is a bipartite nuclear localization signal derived from p53. When p53 Bipartite NLS is fused to the N-terminus of p65 and the single-component nuclear localization signal of p65 itself is mutated, it alters the nuclear import pathway of p65. p53 Bipartite NLS renders p65 resistant to TTP (HY-P60128)-mediated inhibition of NF-κB transcriptional activity and nuclear import. -
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Teprasiran sodium scrambled negative control
0 ImagesCat. No.: HY-132595CTeprasiran sodium scrambled negative control is the sequence scrambled negative control of Teprasiran sodium. -
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X15695
0 ImagesX15695 is selective and orally active estrogen receptor (ERα) degrader. X15695 is an aryl hydrocarbon receptor (AHR) ligand. X15695 enables AHR to form a complex with the ERα, promoting its proteasomal degradation. X15695 inhibits the breast cancer cells proliferation, promotes cell cycle block and induces apoptosis. X15695 can be used for the study of breast cancer. -
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ZMC2
0 ImagesCat. No.: HY-165381CAS No.: 71555-14-1ZMC2 is a thiosemicarbazone-class metal ion chelator and zinc ionophore with a human mutant p53R175H binding Ka of 27.4 nM.ZMC2 binds Fe, Cu, Mn, Zn, and other transition metals.ZMC2 facilitates zinc transport across membranes.ZMC2 restores zinc binding to zinc-deficient p53 mutants, restoring wild-type structure and function, including site-specific DNA binding.ZMC2 generates reactive oxygen species (ROS).ZMC2 can be used for the research of cancer. -
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MDM2-IN-24
0 ImagesCat. No.: HY-163275MDM2-IN-24 (compound A3f) exhibits MDM2-inhibiting and MDMX-activating properties in triple-negative breast cancer (TNBC) cells, with apoptotic and anti-proliferative activities. -
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HLI373
0 ImagesCat. No.: HY-108640CAS No.: 502137-98-6 -
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BI-0282
0 ImagesCat. No.: HY-150620CAS No.: 1883383-48-9BI-0282 (Compound 1) is a potent MDM2-p53 interaction inhibitor. -
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p53-Y220C/PLK1 modulator-1
0 ImagesCat. No.: HY-181616CAS No.: 3114732-99-6 -
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Wnt/β-catenin-IN-3
0 ImagesCat. No.: HY-158210CAS No.: 1809413-98-6 -
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Syringolin A
0 ImagesCat. No.: HY-N15314CAS No.: 212115-96-3Syringolin A is a plant elicitor that can be produced by the plant pathogen Pseudomonas syringae pv. syringae. Syringolin A exhibits anti-proliferative activity against a variety of cancer cells (IC50 for SK-N-SH, LAN-1, SKOV3 is 20-25 µM), induces apoptosis in SK-N-SH through upregulation of p53 expression and downregulation of Akt/PKB proteins. -
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USP10-IN-4
0 ImagesCat. No.: HY-175538USP10-IN-4 is a potent ubiquitin-specific protease 10 (USP10) inhibitor with an IC50 of 10.87 μM and a Kd of 365 nM. USP10-IN-4 effectively inhibits USP10-mediated proteasomal degradation of downstream proteins YAP and p53, leading to the subsequent downregulation of CDK4 in the p53 signaling pathway. USP10-IN-4 promotes apoptosis in HCC cells and inhibits the onset and progression of liver cancer. USP10-IN-4 can used for the study of hepatocellular carcinoma (HCC). -
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p53 Activator 14
0 ImagesCat. No.: HY-170591CAS No.: 2922588-44-9p53 Activator 14 (Compound 7A) is a derivative of Neratinib (HY-32721), that induces DNA damage, activates p53, and inhibits the proliferation of multi cancer cells (IC50=7.21 μM for HCT116 cell). p53 Activator 14 inhibits the adhesion, migration and invasion of HCT116, arrests the cell cycle, and induces apoptosis. p53 Activator 14 inhibits angiogenesis and exhibits antitumor efficacy in chick chorioallantoic membrane (CAM) model. -
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Leucettamol A
0 ImagesCat. No.: HY-125660CAS No.: 151124-32-2Leucettamol A is an inhibitor of Ubc13 (ubiquitin E2 enzyme)-Uev1A interaction, with an IC50 of 50 μg/mL. Leucettamol A can potentially activate the expression of cancer suppressor p53 and is a precursor of anticancer agents. Leucettamol A can be isolated from a marine sponge, Leucetta aff. Microrhaphis. -
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CG-1521
0 ImagesCat. No.: HY-108919CAS No.: 674767-29-4CG-1521 is a histone deacetylase (HDAC) inhibitor that stabilizes Ac-Lys373 P53, increases P21 levels and HDAC2 degradation. CG-1521 can inhibit proliferation, induce cell cycle arrest and apoptosis. CG-1521 promotes Bax translocation to the mitochondria and cleavage. CG-1521 downregulates KIF4, Aurora B and Nek2 protein expression and DNA synthesis. CG-1521 can be used for the research of prostate cancer and inflammatory breast cancer. -
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BMH-9
0 ImagesCat. No.: HY-118912CAS No.: 457937-39-2BMH-9 (Compound Z54) is a modulator for nuclear receptor subfamily 2, group F, member 6 (NR2F6) (also known as nuclear orphan receptor Ear2). BMH-9 is an activator for p53 signaling pathway through interaction with DNA. BMH-9 inhibits proliferation of human cancer cells, exhibits antitumor efficacy in NOD-SCID mouse models. -
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p53 Activator 16
0 ImagesCat. No.: HY-179506P53 Activator 16 (Compound JC16) is a p53 activator. P53 Activator 16 exhibits selective cytotoxicity and pro-apoptotic (apoptosis) activity towards p53-Y220C mutant cancer cells, while having little effect on wild-type or P53-deficient cells. P53 Activator 16 induces the conformational transition of cell p53-Y220C from the mutant form to the wild-type form, accompanied by the transcriptional activation of p53 target genes, without increasing the overall level of p53 protein. P53 Activator 16 can be used for the study of p53 mutant cancers. -
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MI-773 TFA
0 ImagesMI-773 TFA is an orally active, selective MDM2-p53 interaction inhibitor with a Ki of 0.88 nM for MDM2. MI-773 TFA blocks the MDM2-TP53 interaction. MI-773 TFA potently activates p53. MI-773 TFA induces Apoptosis. MI-773 TFA causes tumor regression in xenograft models of adenoid cystic carcinoma. MI-773 TFA exhibits anticancer effects in neuroblastoma. MI-773 TFA can be used for the research of adenoid cystic carcinoma. -
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p53 is at the centre of biological interactions that translates stress signals into cell cycle arrest or apoptosis. Upstream signaling to p53 increases its level and activates its function as a transcription factor in response to a wide variety of stresses, whereas downstream components execute the appropriate cellular response.
Cell Stress: p53 induction by acute DNA damage begins when DNA double-strand breaks trigger activation of ATM, a kinase that phosphorylates the CHK2 kinase, or when stalled or collapsed DNA replication forks recruit ATR, which phosphorylates CHK1. p53 is a substrate for both the ATM and ATR kinases, as well as for CHK1 and CHK2, which coordinately phosphorylate p53 to promote its stabilization. These phosphorylation events are important for p53 stabilization, as some of the modifications disrupt the interaction between p53 and its negative regulators MDM2 and MDM4. MDM2 and MDM4 bind to the transcriptional activation domains of p53, thereby inhibiting p53 transactivation function, and MDM2 has additional activity as an E3 ubiquitin ligase that causes proteasome-mediated degradation of p53. Phosphorylation also allows the interaction of p53 with transcriptional cofactors, which is ultimately important for activation of target genes and for responses such as cell cycle arrest, DNA repair, apoptosis and senescence. Non-receptor tyrosine kinase c-Abl can also be activated by DNA damage. Then the JNK/p38 is activated and leads to p53 activation[1][2].
Oncogenic signaling: The response to oncogene activation depends on the binding of ARF to MDM2. ARF is normally expressed at low levels in cells. Inappropriately increased E2F or Myc signals, stemming from oncogene activation, leads to the increased expression of ARF, which inhibits MDM2 by blocking its E3 ubiquitin ligase activity, uncoupling the p53-MDM2 interaction, thereby segregating it from nucleoplasmic p53[3].
The PI3K-Akt pathway activates MDM2 and increases the ubiquitination of p53.
Reference:
[1]. Chène P, et al. Inhibiting the p53-MDM2 interaction: an important target for cancer therapy. Nat Rev Cancer. 2003 Feb;3(2):102-9.
[2]. Brown CJ, et al. Awakening guardian angels: drugging the p53 pathway. Nat Rev Cancer. 2009 Dec;9(12):862-73.
[3]. Polager S, et al. p53 and E2f: partners in life and death. Nat Rev Cancer. 2009 Oct;9(10):738-48. doi: 10.1038/nrc2718.