- Signaling Pathways
- Apoptosis
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Bcl-2 Family
Bcl-2 Family Isoform Specific Products
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Bcl-2 Family
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Bcl-2
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Bcl-xL
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Bax
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Bcl-2 Family Inhibitors
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Bcl-2 Family Activators
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Bcl-2 Family Ligands
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Bcl-2 Family Related Products (1035)
Related Products (1035)
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Antibodies (31)
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Bcl-2 Family Signaling Pathway
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Bcl-2 Family Isoform Comparison
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Proadifen hydrochloride
0 ImagesProadifen (SKF-525A) hydrochloride is a non-competitive Cytochrome P450 inhibitor with an IC50 value of 19 μM. Proadifen hydrochloride reduces monoamine oxidase A (MAO-A) activity and reverses the antidepressantlike behavioral effect of Imipramine (HY-B1490A) and Desipramine (HY-B1272A) in rats. Proadifen hydrochloride also reduces N, N-dimethyltryptamine (DMT) metabolism in liver microsomes and inhibits N-demethylationand Acridone (HY-W007771) formation. Proadifen hydrochloride augments Lipopolysaccharide (LPS) (HY-D1056)-induced fever and exacerbates Prostaglandin E2 (PGE2) (HY-101952) levels in the rat. Proadifen hydrochloride is promising for research of metabolism-related deseases, ovarian carcinoma, inflammation and dopamine neurons-related deseases. -
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BM-1244
0 ImagesSynonyms: APG-1252-M1BM-1244 (APG-1252-M1) is a Bcl-xL/Bcl-2 inhibitor with Kis of 134 nM and 450 nM. BM-1244 has anti-tumor effects by inducing apoptosis and suppressing tumor growth. BM-1244 can induce cytochrome C and Smac release from mitochondria with caspase-3 and PARP cleavage. BM-1244 exhibits synergy with chemotherapy in vivo. BM-1244 can be studied in research for colorectal cancer, acute myeloid leukemia and gastric cancer. -
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STAT3-IN-13
0 ImagesSTAT3-IN-13 (compound 6f) is a potent STAT3 inhibitor. STAT3-IN-13 has anti-proliferative effects and binds to the STAT3 SH2 domain with a KD of 0.46 μM. STAT3-IN-13 inhibits the phosphorylation of STAT3 Y705 and downstream target gene expression. STAT3-IN-13 induces apoptosis in vitro and suppresses the growth and metastasis of tumor in vivo. STAT3-IN-13 can be used for cancer research. -
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UBX1325
0 ImagesUBX1325 is an Bcl-xL inhibitor that promotes apoptosis in senescent cells. UBX1325 is a potent anti-aging agent that can be used in studies of age-related eye diseases such as diabetic macular oedema (DME), age-related macular degeneration (AMD) and diabetic retinopathy (DR). -
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Ganoderma lucidum polysaccharide
0 ImagesCat. No.: HY-159059Ganoderma Lucidum/Reishi Extract is a Ganoderma lucidum extract. Ganoderma Lucidum/Reishi Extract reduces the expression of c-Myc, BCL-2, BCL-XL, TERT, PDGFB, eIF4G, Survivin, β-catenin, and eIF4E. Ganoderma Lucidum/Reishi Extract downregulates the gene expression of MMP-9. Ganoderma Lucidum/Reishi Extract upregulates the expression of IL8. Ganoderma Lucidum/Reishi Extract is applicable to the research of inflammatory breast cancer. Ganoderma Lucidum is used in the research of various diseases, such as allergy, arthritis, hypertension, neurasthenia, inflammation, and cancer. -
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Edelfosine
0 ImagesSynonyms: ET-18-OCH3Edelfosine (ET-18-OCH3) is an orally active lipid raft modulator and apoptosis inducer that alters membrane fluidity and preferentially inserts into tumor cell membranes. Edelfosine recruits death receptor ligands (FasL/CD95L, TRAIL) and Bid to lipid rafts to form death-inducing signaling complexes, thereby initiating mitochondria-dependent apoptosis and inducing cytochrome c release. Edelfosine also exerts anti-inflammatory effects, promotes L-Selectin shedding, and causes no gastrointestinal or organ toxicity. In addition, Edelfosine inhibits nucleic acid and protein synthesis in Leishmania donovani and exhibits antiproliferative activity. Edelfosine can be used in research on multiple myeloma, inflammatory bowel diseases (such as ulcerative colitis and Crohn's disease), and visceral leishmaniasis. -
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- S55746
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IGF2BP1-IN-1
0 ImagesIGF2BP1-IN-1, a Cucurbitacin B (HY-N0416) derivative, is a potent IGF2BP1 inhibitor (KD = 2.88 nM). IGF2BP1-IN-1 binds directly to IGF2BP1, thereby inducing tumor cell cycle arrest, increasing apoptosis, and reducing autophagy. IGF2BP1-IN-1 can be used in research on NSLSC, colon, breast, liver, ovarian, pancreatic, and cervical cancers. -
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Venetoclax (Standard)
0 ImagesSynonyms: ABT-199 (Standard); GDC-0199 (Standard); RG7601 (Standard) -
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PROTAC Bcl2 degrader-1
0 ImagesPROTAC Bcl2 degrader-1 (Compound C5) is a PROTAC based on Cereblon ligand, which potently and selectively induces the degradation of Bcl-2 (IC50, 4.94 μM; DC50, 3.0 μM) and Mcl-1 (IC50, 11.81 μM) by introducing the E3 ligase cereblon (CRBN)-binding ligand pomalidomide to Mcl-1/Bcl-2 dual inhibitor Nap-1. -
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Navitoclax-piperazine
0 ImagesSynonyms: ABT-263-piperazineNavitoclax-piperazine (ABT-263-piperazine) is a Navitoclax (HY-10087) analog and BCL-XL inhibitor. Navitoclax-piperazine is the ligand for target protein of PROTAC DT2216 (HY-130604). Navitodax-pperaie and E3 ubiquitin ligase VHL ligand can be used to synthesize PROTAC DT2216 (HY-130604). -
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Poly-L-lysine hydrobromide (MW 30000-70000)
0 ImagesCat. No.: HY-126437CAS No.: 25988-63-0Poly-L-lysine hydrobromide (MW 30000-70000) is a water-soluble synthetic polypeptide. Poly-L-lysine hydrobromide (MW 30000-70000) downregulates Bcl-2 and upregulates Bax and p53 proteins. Poly-L-lysine hydrobromide (MW 30000-70000) promotes Apoptosis and reduces VEGF expression. Poly-L-lysine hydrobromide (MW 30000-70000) shows anticancer activity against a variety of tumors. Poly-L-lysine hydrobromide (MW 30000-70000) can also be used as a coating material. -
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- PROTAC Mcl1 degrader-1
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Fluazinam
0 ImagesFluazinam is an orally active dinitroaniline fungicide. Fluazinam induces phosphorylation of JNK, activates p38 pathway, decreases Bcl-2, activates caspase-3, decreases complex I activity, increases Autophagy and Apoptosis. Fluazinam has strong antifungal activity against F. fujikuroi and B. maydis. Fluazinam has a negative impact on Brachydanio rerio and worker bees. -
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- TW-37
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(R)-(-)-Gossypol
0 ImagesSynonyms: AT-101; R-(-)-gossypol acetic acid -
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Sorafenib (Standard)
0 ImagesSynonyms: Bay 43-9006 (Standard)Sorafenib (Standard) (Bay 43-9006 (Standard)) is the analytical standard of Sorafenib (HY-10201). This product is intended for research and analytical applications. Sorafenib (Bay 43-9006) is a potent oral active multikinase inhibitor. Sorafenib blocks autophosphorylation and activity of receptor tyrosine kinases (VEGFR-2, VEGFR-3) and RAF family kinases, thereby suppressing the RAF/MEK/ERK and PI3K/Akt pathways, inhibiting STAT3 phosphorylation, and selectively inhibiting the MAPK pathway in cancer cells. Sorafenib induces cell cycle arrest, autophagy, apoptosis, and PARP cleavage, reduces Bcl-2, Bcl-XL, cyclin D1 levels, and activates Bak and Bax. Sorafenib inhibits tumor growth and metastasis in mouse and rat models. Sorafenib can be used for cancer research, such as colon, breast, non-small-cell lung cancer (NSCLC), ovarian, pancreatic, melanoma, colorectal and hepatocellular carcinoma. -
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- Tapotoclax
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SHP2-D26
0 ImagesCat. No.: HY-145162CAS No.: 2458219-65-1SHP2-D26 is a SHP2 PROTAC degrader with DC50 values of 6.0 nM (KYSE520 cells) and 2.6 nM (MV4;11 cells), respectively. SHP2-D26 inhibits ERK phosphorylation, upregulates Bim levels, downregulates Mcl-1 levels, and induces cell cycle arrest and apoptosis. SHP2-D26 can be used in studies related to esophageal cancer, acute myeloid leukemia and non-small cell lung cancer. -
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PROTAC B-Raf degrader 1
0 ImagesPROTAC B-Raf degrader 1 is a PROTAC degrader targeting B-Raf, which recruits the ubiquitin-proteasome system to accelerate B-Raf degradation and reduce the expression of downstream Mcl-1. PROTAC B-Raf degrader 1 inhibits cancer cell proliferation, arrests cell cycle and induces apoptosis. PROTAC B-Raf degrader 1 can be used in breast cancer-related research. -
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Bcl-2 family members have been grouped into three classes. The anti-apoptotic subfamily contains the Bcl-2, Bcl-XL, Bcl-w, Mcl-1, Bfl1/A-1, and Bcl-B proteins, which suppress apoptosis and contain all four Bcl-2 homology domains, designated BH1-4. The pro-apoptotic subfamily contain BH1-3 domains, such as Bax, Bak, and Bok. A third class of BH3 only proteins Bad, Bid, Bim, Noxa and Puma have a conserved BH3 domain that can bind and regulate the anti-apoptotic BCL-2 proteins to promote apoptosis [1].
The intrinsic pathway is initiated by various signals, principally extracellular stimuli. BH3-only proteins (Bim, Bid, Bad, Noxa, Puma) engage with anti-apoptotic Bcl-2 family proteins to relieve their inhibition of Bax and Bak to activate them. Next, Bax and Bak are oligomerized and activated, leading to mitochondrial outer membrane permeabilization. Once mitochondrial membranes are permeabilized, cytochrome c and/or Smac/DIABLO is released into the cytoplasm, wherein they combine with an adaptor molecule, Apaf-1, and an inactive initiator Caspase, Pro-caspase 9, within a multiprotein complex called the apoptosome. Smac/DIABLO inhibits IAPs to activate Caspase 9. Caspase 9 activates Caspase 3, which is the initiation step for the cascade of Caspase activation. The extrinsic pathway can be activated by cell surface receptors, such as Fas and TNF Receptor, subsequently activating Caspase 8, and leads to Caspase 3 activation and cell demolition. Caspases in turn cleave a series of substrates, activate DNases and orchestrate the demolition of the cell. Bcl-2 family proteins are also found on the endoplasmic reticulum and the perinuclear membrane in hematopoietic cells, but they are predominantly localized to mitochondria [2].
Reference:
[1]. Cotter TG, et al. Apoptosis and cancer: the genesis of a research field. Nat Rev Cancer. 2009 Jul;9(7):501-7.
[2]. Kang MH, et al. Bcl-2 inhibitors: targeting mitochondrial apoptotic pathways in cancer therapy. Clin Cancer Res. 2009 Feb 15;15(4):1126-32.
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