- Signaling Pathways
- Apoptosis
- c-Myc
c-Myc
Myc
The transcription factor c-Myc is a member of the basic helix-loop-helix leucinezipper (bHLHZip) protein family. The target genes of the c-MYC protein participate in different cellular functions, including cell cycle, survival, protein synthesis, cell adhesion, and micro-RNA expression. c-Myc is also one of the four factors used in reprogramming somatic cells to induce pluripotent stem (iPS) cells and is implicated in maintaining cancer stem-like cells (CSCs). Most biological functions of c-Myc require heterodimerization with its activation partner Max.
c-Myc is also part of a dynamic network whose members interact selectively with one another and with various transcriptional coregulators and histone-modifying enzymes. Deregulated expression of c-MYC caused by gene amplification, retroviral insertion, or chromosomal translocation is associated with tumorigenesis. c-Myc has been identified as a highly promising target for cancer therapy.
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c-Myc Related Products (249)
Related Products (249)
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Antibodies (12)
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Bruceantin
0 ImagesSynonyms: (-)-Bruceantin; NCI165563; NSC165563 -
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Briciclib
0 ImagesSynonyms: ON 014185Briciclib (ON 014185) is a eukaryotic translation initiation factor 4E (eIF4E) inhibitor. Briciclib exhibits broad-spectrum anti-cancer activity, including in mantle cell leukemia, breast cancer, gastric cancer, and esophageal cancer cells. Briciclib reduces the expression of cyclin D1 and c-Myc, and enhances the expression of P53 and Cleaved Caspase 3 pro-apoptotic proteins. Briciclib can be used for the study of hematological system tumors and solid tumors. -
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YK-2168
0 ImagesYK-2168 is a potent and selective CDK9 inhibitor with an IC50 of 5.9 nM. YK-2168 inhibits phosphorylation of the CDK9 substrate pS2-RNA Pol II C-terminal domain. YK-2168 induces apoptosis in tumor cells, suppresses expression of CDK9-regulated genes including MYC and Mcl1, and inhibits tumor growth in CDX mice models. YK-2168 can be used for the research of cancer, such as leukemia. -
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MDEG-541
0 ImagesCat. No.: HY-150259Purity: 98.68%MDEG-541 is a PROTAC degrader targeting MYC, GSPT1/2 and PLK1. MDEG-541 induces degradation via proteasome- and ubiquitin-dependent pathways. MDEG-541 exhibits anti-tumor activity in gastrointestinal cancer cells and patient-derived organoids. MDEG-541 can be used for the research of gastrointestinal cancer. -
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Ifupinostat
0 ImagesSynonyms: BEBT-908Ifupinostat (BEBT-908) is a blood-brain barrier-permeable PI3K/HDAC inhibitor. Ifupinostat exerts anticancer activity against hematologic malignancies, lung cancer, colon cancer, brain cancer and other cancers. Ifupinostat inhibits the PI3K/AKT/mTOR signaling pathway, suppresses c-Myc expression and induces ferroptosis. Ifupinostat can be used in tumor research. -
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KL4-219A
0 ImagesCat. No.: HY-172825Purity: 99.85%KL4-219A is a selective covalent oncogenic transcription factor MYC degrader. KL4-219A potently and durably degrades MYC in cancer cells. KL4-219A binds covalently to MYC at C203, leading to the destabilization of MYC and subsequent proteasome-dependent degradation. KL4-219A is promising for research of cancers driven by MYC overexpression. -
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Tocopherols
0 ImagesTocopherols are orally effective antioxidants and ferroptosis inhibitors. Tocopherols scavenge ROS/RNS, alleviate DNA damage, downregulate cyclin D1/c-Myc/TFF/pS2/PGR in an ER-dependent manner, and inhibit ferroptosis mediated by lipid peroxidation. Tocopherols block the occurrence of ferroptosis in Gpx4-knockout Pfa1 cells, with an EC50 value of 1.0-2.3 μM. Tocopherols inhibit tumor growth. Tocopherols can be used in studies related to estrogen-mediated ER+ breast cancer, oxidative stress-induced carcinogenesis, and ferroptosis regulation. -
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- sAJM589
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HZX-02-059
0 ImagesSynonyms: Methuosis inducer 1HZX-02-059 is an allosteric inhibitor of PIKFYVE, and a methuosis inducer. HZX-02-059 disrupts the PIKfyve/TFEB axis, suppresses tubulin polymerization, reduces phosphorylated mTOR levels, downregulates p53, PI3K/AKT, c-Myc, and NF-κB pathways. HZX-02-059 induces G2/M cell cycle arrest, apoptosis, and inhibits cancer cell proliferation. HZX-02-059 can be used for the research of lymphoma, double-hit lymphoma, and B-cell acute lymphoblastic leukemia. -
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Q901
0 ImagesCat. No.: HY-153278CAS No.: 2766124-39-2Synonyms: CDK7-IN-21Q901 (CDK7-IN-21) is a selective and potent CDK7 inhibitor with an IC50 of 10 nM. Q901 disrupts MYC and E2FTOP1-DPCs and sensitizes tumor to TOP1 inhibitors by suppressing RNAPII transition from initiation to elongation. Q901 can inhibit tumor growth and significantly enhances tumor growth inhibition combined with TOP1 inhibitors. Q901 can be used for the research of cancer, such as colon cancer and lung cancer. -
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- MY05
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- RA-V
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PPA24
0 ImagesPPA24 is a PP2A activator with a KD of 8.465 μM for PP2ACα. PPA24 induces cancer cell death via apoptosis. PP2ACα induces ROS generation and decreases the level of c-Myc expression. PPA24 can be used to study colorectal cancer (CRC), Folinic acid (HY-17556), 5-Fluorouracil (HY-90006), and Oxaliplatin (HY-17371) (FOLFOX)-resistant CRC, and melanoma cancer. -
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Bruceantinol
0 ImagesBruceantinol is a quassinoid that can be isolated from Brucea javanica, inhibits pepper mottle virus (PepMoV) in pepper. Bruceantinol is a STAT3 inhibitor demonstrating potent antitumor activity in in vitro and in vivo human colorectal cancer (CRC) models. Bruceantinol has potent anti-leukemic activity. Bruceantinol strongly inhibits STAT3 DNA-binding ability (IC50 = 2.4 pM), blocks the constitutive and IL-6-induced STAT3 activation, and suppresses transcription of MCL-1, PTTG1, survivin and c-Myc. Bruceantinol binds with CDK2/4/6 to facilitate protein degradation through proteasome pathway. Bruceantinol can dose- and time-dependently reduces the cell growth, impede cell proliferation, disrupts the cell cycle, and induces necrosis in MCF-7 cells and apoptosis in MDA-MB-231 cells. -
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Methyl protodioscin
0 ImagesSynonyms: NSC-698790; Smilax saponin BMethyl protodioscin (NSC-698790; Smilax saponin B) is a multi-target, selective, steroidal diglycoside inhibitor with antitumor activity that induces cell cycle arrest. The mechanism of action of Methyl protodioscin is complex, involving the induction of G2/M cell cycle arrest, regulation of the Bcl-2/Bax apoptotic pathway, inhibition of the Akt1/c-Myc axis and MAPK/ERK signaling, while simultaneously downregulating ADAM15 and inducing FOXO1 to reduce cholesterol synthesis. It also inhibits the JNK/c-Jun pathway, reducing the production of inflammatory factors (IL-6, TNF-α). Methyl protodioscin exhibits significant antitumor (inhibiting proliferation, migration, invasion, and inducing apoptosis), anti-inflammatory, and anti-restenosis activities. Methyl protodioscin can be used in research on lung cancer, prostate cancer, pancreatic cancer, and other tumors, as well as inflammatory diseases such as airway inflammation and enteritis. -
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NRX-0492
0 ImagesNRX-0492 is an orally active BTK PROTAC degrader, with a binding IC50 of 1.2 nM for both wild-type BTK and BTKT474I, and 2.7 nM for BTKC481S, and exhibits cellular DC50 values of 0.1 nM and 0.2 nM against wild-type BTK and BTKC481S, respectively. NRX-0492 catalyzes the ubiquitination and proteasomal degradation of wild-type and drug-resistant mutant BTK by recruiting the CRBN E3 ubiquitin ligase complex. NRX-0492 inhibits the BCR signaling pathway and its downstream NF-κB/MYC transcriptional program, achieves rapid and sustained degradation in primary CLL cells, and exhibits extremely low cytotoxicity. NRX-0492 degrades BTK, inhibits tumor cell proliferation and activation, and significantly suppresses tumor growth in xenograft models. NRX-0492 can be used in research related to chronic lymphocytic leukemia and diffuse large B-cell lymphoma. -
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HLB-0532259
0 ImagesHLB-0532259 is a Aurora-A/N-Myc PROTAC degrader, with a DC50 of 20.2 nM against Aurora-A in MCF-7 cells; its DC50 values against N-Myc are 179 nM in SK-N-BE (2) cells and 229 nM in Kelly cells, respectively. HLB-0532259 induces apoptosis (apoptosis) in MYCN-amplified neuroblastoma cells and inhibits tumor growth in mouse xenograft models. HLB-0532259 can be used for the research of neuroblastoma. -
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Gigantol
0 ImagesGigantol is an orally active bibenzyl compound. Gigantol targets MYC to promote its ubiquitin-proteasomal degradation and inhibit the growth of lung cancer cells. Gigantol exerts anti-lung cancer activity by inducing ferroptosis (Ferroptosis) via the SLC7A11-GPX4 axis. Gigantol restores the sensitivity of mcr-harboring multidrug-resistant bacteria to colistin. Gigantol ameliorates carbon tetrachloride-induced liver injury by inhibiting the activation of the JNK/cPLA2/12-LOX inflammatory pathway. Gigantol promotes cholesterol metabolism and progesterone biosynthesis in Leydig cells. Gigantol can be used in studies related to diseases such as lung cancer, multidrug-resistant Gram-negative bacterial infections, and acute liver injury. -
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VPC-70063
0 ImagesVPC-70063 is a potent Myc-Max inhibitor with an IC50 value of 8.9 μM for Myc-Max transcriptional activity inhibition. VPC-70063 reduces UBE2C promotor activity and AR-V7 levels, and induces PARP cleavage. VPC-70063 induces apoptosis and blocks Myc-Max interactions with DNA. VPC-70063 can be used for researching anticancer. -
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Bullatine A
0 ImagesBullatine A, a diterpenoid alkaloid, is a potent P2X7 antagonist. Bullatine A possesses anti-rheumatic, anti-inflammatory and anti-nociceptive effects. Bullatine A inhibits ATP-induced BV-2 cell death/apoptosis and P2X receptor-mediated inflammatory responses. Bullatine A suppresses glioma cell growth by targeting SIRT6. Bullatine A specifically attenuates pain hypersensitivity in rats. Bullatine A attenuates LPS (HY-D1056)-induced systemic inflammatory response by inhibiting the ROS/JNK/NF-κB pathway in mice. Bullatine A improves despair behavior in Chronic chronic social defeat stress (CSDS) mice. Bullatine A can be used for the study of inflammation, glioblastoma (GBM) and depression. -
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