- Signaling Pathways
- Apoptosis
- TNF Receptor
TNF Receptor
Tumor Necrosis Factor Receptor; TNFR
Tumor necrosis factor (TNF) is a major mediator of apoptosis as well as inflammation and immunity, and it has been implicated in the pathogenesis of a wide spectrum of human diseases, including sepsis, diabetes, cancer, osteoporosis, multiple sclerosis, rheumatoid arthritis, and inflammatory bowel diseases.
TNF-α is a 17-kDa protein consisting of 157 amino acids that is a homotrimer in solution. In humans, the gene is mapped to chromosome 6. Its bioactivity is mainly regulated by soluble TNF-α–binding receptors. TNF-α is mainly produced by activated macrophages, T lymphocytes, and natural killer cells. Lower expression is known for a variety of other cells, including fibroblasts, smooth muscle cells, and tumor cells. In cells, TNF-α is synthesized as pro-TNF (26 kDa), which is membrane-bound and is released upon cleavage of its pro domain by TNF-converting enzyme (TACE).
Many of the TNF-induced cellular responses are mediated by either one of the two TNF receptors, TNF-R1 and TNF-R2, both of which belong to the TNF receptor super-family. In response to TNF treatment, the transcription factor NF-κB and MAP kinases, including ERK, p38 and JNK, are activated in most types of cells and, in some cases, apoptosis or necrosis could also be induced. However, induction of apoptosis or necrosis is mainly achieved through TNFR1, which is also known as a death receptor. Activation of the NF-κB and MAPKs plays an important role in the induction of many cytokines and immune-regulatory proteins and is pivotal for many inflammatory responses.
TNF Receptor Isoform Specific Products
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TNF Receptor
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TNFRSF1A/
CD120a (8)View all products
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TNFRSF3/
CD18 (1)View all products
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TNFRSF4
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TNFRSF5/
CD40 (118)View all products
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TNFRSF6/
Fas/ (2)CD95 View all products
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TNFRSF7/
CD27 (2)View all products
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TNFRSF8/
CD30 (3)View all products
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TNFRSF9/
4-1BB/ (3)CD137 View all products
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TNFRSF10B/
DR5/ (1)CD262 View all products
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TNFRSF12A/
TWEAK (5)View all products
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TNFRSF16/
NGF Receptor/ (1)CD271 View all products
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TNFRSF18/
GITR/ (6)CD357 View all products
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TNF Receptor Inhibitors
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TNF Receptor Superfamily Proteins
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TNF Receptor Related Products (1222)
Related Products (1222)
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Recombinant Proteins (282)
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Antibodies (23)
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TNF Receptor Signaling Pathway
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TNF Receptor Isoform Comparison
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EGFR-IN-144
0 ImagesCat. No.: HY-172111EGFR-IN-144 (Compound 4B) exhibits inhibitory activities against EGFR (IC50=0.639 µg/mL) and tubulin polymerization (IC50=7.339 µg/mL). EGFR-IN-144 exhibits cytotoxicity in multiple cancer cell with GI50 of nanomolare levels. EGFR-IN-144 downregulates the expressions of mTOR, TNF-α, and IL-6, arrests the cell cycle at G1/S phase, and induces apoptosis. -
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- C2NP sodium
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PI3K/AKT/JAK2-IN-1
0 ImagesCat. No.: HY-184385PI3K/AKT/JAK2-IN-1 is a potent multi-target inhibitor of the PI3K/AKT/JAK2 signaling pathway. PI3K/AKT/JAK2-IN-1 suppresses NO production (IC50 = 1.0 μM), reduces pro-inflammatory cytokines (TNF-α, IL-6, IL-1β, IL-17A, IL-22), and inhibits keratinocyte hyperproliferation by downregulating Ki67 and PCNA. PI3K/AKT/JAK2-IN-1 can be used for psoriasis research. -
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Anti-Mouse 4-1BBL/CD137L (D265A) Antibody (TKS-1)
0 ImagesCat. No.: HY-P990304BAnti-Mouse 4-1BBL/CD137L (D265A) Antibody (TKS-1) is a mouse-derived IgG1 κ antibody inhibitor that targets mouse 4-1BBL/CD137L. Anti-Mouse 4-1BBL/CD137L (D265A) Antibody (TKS-1) is a chimeric version of the original TKS-1 antibody (HY-P990304). The variable domain sequences are identical to the original TKS-1 but the constant region sequences have been switched from rat IgG2a to mouse IgG1. Anti-Mouse 4-1BBL/CD137L (D265A) Antibody (TKS-1) contains a D265A mutation in the Fc fragment rendering it unable to bind to endogenous Fcγ receptors. Anti-Mouse 4-1BBL/CD137L (D265A) Antibody (TKS-1) reacts with mouse 4-1BB ligand (4-1BBL). Anti-Mouse 4-1BBL/CD137L (D265A) Antibody (TKS-1) can be used for the researches of cancer, infection, inflammation and immunology. -
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Oxoglaucine
0 ImagesOxoglaucine (O-Methylatheroline) is a natural product with multiple activities including autophagy activation, anti-inflammation, antibacterial activity, and immunoregulation. Oxoglaucine inhibits the TRPV5/calmodulin/CAMK-II pathway, suppresses TGFβ-induced Smad2 phosphorylation by upregulating Smad7, blocks Ca2+ influx, activates autophagy, alleviates apoptosis and inflammation, inhibits ROS production and the expression of fibrosis markers in hepatocytes, and regulates immune cell populations and responses. Oxoglaucine protects against infections caused by Candida albicans and Klebsiella pneumoniae, and exerts effects on adjuvant-induced arthritis. Oxoglaucine can be used in studies related to arthritis, liver fibrosis, bacterial infections, and fungal infections. -
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Trichodimerol
0 ImagesCat. No.: HY-N12104CAS No.: 145174-90-9Synonyms: BMS-182123Trichodimerol (BMS-182123) is a TNF-α promoter inhibitor that inhibits the activity of lipopolysaccharide-induced cytokine secretion. Trichodimerol inhibits lipopolysaccharide-induced TNF-α promoter activity, reduces steady-state TNF-α mRNA expression, and does not alter the stability of TNF-α mRNA. Trichodimerol inhibits lipopolysaccharide-induced TNF-α secretion in murine and human immune cells. Trichodimerol reduces lipopolysaccharide-induced IL-1β secretion by 25%-50% in vitro. Trichodimerol does not alter total protein synthesis or constitutive lysozyme secretion at effective concentrations. Trichodimerol can be used for the research of septic shock. -
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GSK2245035 maleate
0 ImagesCat. No.: HY-118250ACAS No.: 1325212-97-2GSK2245035 maleate is a highly potent and selective intranasal Toll-Like receptor 7 (TLR7) agonist with preferential Type-1 interferon (IFN)-stimulating properties. GSK2245035 maleate has pEC50s of 9.3 and 6.5 for IFNα and TFNα. GSK2245035 maleate effectively suppresses allergen-induced Th2 cytokine production in human peripheral blood cell cultures. GSK2245035 maleate is used for asthma. -
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Anti-Mouse GITR (D265A) Antibody (DTA-1)
0 ImagesCat. No.: HY-P990241Anti-Mouse GITR (D265A) Antibody (DTA-1) is an anti-mouse GITR IgG1 monoclonal antibody. Anti-Mouse GITR (D265A) Antibody (DTA-1) is a chimeric antibody of the original DTA-1 antibody (HY-P990124). Anti-Mouse GITR (D265A) Antibody (DTA-1) contains the D265A mutation region. Anti-Mouse GITR (D265A) Antibody (DTA-1) can be used for research on cancer and allergic conditions. The recommed isotype control of Anti-Mouse GITR (D265A) Antibody (DTA-1) is Mouse IgG1 kappa, Isotype Control (HY-P99977). -
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12-Hydroxydehydroabietic acid
0 ImagesCat. No.: HY-N9558CAS No.: 116032-84-912-Hydroxydehydroabietic acid is a diterpenoid found in the whole plant of Gaultheria yunnanensis. 12-Hydroxydehydroabietic acid weakly inhibits pro-inflammatory cytokine TNF-α production in LPS (HY-D1056)-induced macrophages. -
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DOR agonist 2
0 ImagesCat. No.: HY-162850CAS No.: 1212540-02-7DOR agonist 2 (Compound 3) is a Delta Opioid Receptor agonist. DOR agonist 2 can inhibit the expression of TNF-α, prevent NF-κB transport to the nucleus, and activate the G protein-mediated ERK1/2 pathway. DOR agonist 2 can be used in the study of neurodegenerative diseases. -
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COX-2/5-LOX-IN-8
0 ImagesCat. No.: HY-183764COX-2/5-LOX-IN-8 is an orally active dual COX-2/5-LOX inhibitor, with an IC50 of 6.30 μM against sheep-derived COX-2 and an IC50 of 8.09 μM against 5-LOX. COX-2/5-LOX-IN-8 acts as a membrane stabilizer that stabilizes erythrocyte membranes against hypotonicity-induced hemolysis. COX-2/5-LOX-IN-8 functions as a protein stabilizer that inhibits heat-induced denaturation of bovine serum albumin. COX-2/5-LOX-IN-8 reduces paw swelling, improves hind limb weight-bearing function, decreases serum levels of pro-inflammatory cytokines (TNF-α, IL-1β, IL-6, CRP), and lowers serum levels of cartilage degradation biomarkers (COMP, MMP-3, CTX-II). COX-2/5-LOX-IN-8 can be used in the research of osteoarthritis. -
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KF24345 free base
0 ImagesCat. No.: HY-117569CAS No.: 178750-21-5KF24345 free base is an orally active adenosine uptake inhibitor. KF24345 free base inhibits adenosine uptake by human, mouse, rabbit and hamster erythrocytes with IC50 values of 59.5, 130.1, 104.2 and 30.9 nM, respectively. KF24345 free base has anti-inflammatory activity and can inhibit LPS-induced TNF-α production and leukopenia in mice. -
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Muscone (Standard)
0 ImagesMuscone (Standard) is the analytical standard of Muscone. This product is intended for research and analytical applications. Muscone is the main active monomer of traditional Chinese medicine musk. Muscone inhibits NF-κB and NLRP3 inflammasome activation. Muscone remarkably decreases the levels of inflammatory cytokines (IL-1β, TNF-α and IL-6), and ultimately improves cardiac function and survival rate. -
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ASP8374
0 ImagesCat. No.: HY-P991393 -
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Omeprazole sodium (Standard)
0 ImagesCat. No.: HY-B0113ARCAS No.: 95510-70-6Synonyms: H 16868 sodium (Standard)Omeprazole (sodium) (Standard) is the analytical standard of Omeprazole (sodium). This product is intended for research and analytical applications. Omeprazole sodium (H 16868) is an orally active H+,K+-ATPase inhibitor and a proton pump inhibitor. Omeprazole sodium competitively inhibits CYP2C19, CYP3A4, and CYP2C9 activity. Omeprazole sodium inhibits gastric acid secretion and can be used for acid-related gastrointestinal disorders. Omeprazole sodium inhibits pancreatic cancer cell proliferation, induces apoptosis, autophagosome accumulation (elevated LC3-I and LC3-II levels), oxidative stress, and cytogenetic imbalance, modulates lysosomal transport, reduces inflammatory cytokines. Omeprazole sodium alters small intestinal morphology and magnesium absorption, and induces gastric mucosa morphologic changes. Omeprazole sodium aslo has neuroprotective and antibacterial effects. -
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Neuroprotective agent 18
0 ImagesCat. No.: HY-184935Neuroprotective agent 18 is a potent neuroprotective agent. Neuroprotective agent 18 inhibits the activity of NF-κB thereby significantly downregulating the expression of downstream pro-inflammatory mediators (TNF-α, IL-6) and inflammatory enzymes (COX-2) in the hippocampus. Neuroprotective agent 18 binds to AChE thereby partially inhibiting it and modulating cholinergic neurotransmission. Neuroprotective agent 18 can be used in research on Alzheimer's disease. -
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Divaricatol
0 ImagesCat. No.: HY-N17727CAS No.: 331433-08-0Divaricatol is an orally ative chromone natural product and an active component in Saposhnikovia divaricata. Divaricatol reduces the release of pro-inflammatory cytokines and restores immune homeostasis by stably binding to 5KIR (a target of the TNF/IL-17 pathway). Divaricatol exerts analgesic effects in mouse models. Divaricatol can be used in the research of pain, diarrhea-predominant irritable bowel syndrome (IBS-D) and qi deficiency syndrome. -
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TBL-CLN1
0 ImagesCat. No.: HY-P991878TBL-CLN1 is an antibody against human TNFRSF17/BCMA/CD269. -
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PROTAC PDE4 degrader-1
0 ImagesCat. No.: HY-174405CAS No.: 3087311-36-9PROTAC PDE4 degrader-1 is an orally active CRBN-recruiting PDE4B PROTAC degrader. PROTAC PDE4 degrader-1 shows an IC50 of 1.9 μM against PDE4B, degrades PDE4B via the ubiquitin-proteasome pathway, and shows weak activity against PDE4C. PROTAC PDE4 degrader-1 inhibits the secretion of pro-inflammatory cytokines TNF-α and IL-6, reduces the infiltration of inflammatory cells into lung tissues, protects lung tissues and alleviates acute lung injury. PROTAC PDE4 degrader-1 can be used for the research of acute lung injury. -
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Candidusin A
0 ImagesCat. No.: HY-N16066CAS No.: 81474-59-1Synonyms: CHNQD-0803Candidusin A (CHNQD-0803) (Compound 4) is a AMPK activator with a KD of 47.28 nM. Candidusin A can be isolated from marine fungus Aspergillus candidus. Candidusin A has cytotoxic activity and induces apoptosis in human prostate cancer cells (22Rv1, PC-3 and LNCaP cells). Candidusin A reduces adipogenesis genes expression and fat deposition, negatively regulates the NF-κB-TNFα inflammatory axis to suppress inflammation, and ameliorates liver injury and fibrosis. Candidusin A can be used for non-alcoholic steatohepatitis (NASH) research. -
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Following the binding of TNF to TNF receptors, TNFR1 binds to TRADD, which recruits RIPK1, TRAF2/5 and cIAP1/2 to form TNFR1 signaling complex I; TNFR2 binds to TRAF1/2 directly to recruit cIAP1/2. Both cIAP1 and cIAP2 are E3 ubiquitin ligases that add K63 linked polyubiquitin chains to RIPK1 and other components of the signaling complex. The ubiquitin ligase activity of the cIAPs is needed to recruit the LUBAC, which adds M1 linked linear polyubiquitin chains to RIPK1. K63 polyubiquitylated RIPK1 recruits TAB2, TAB3 and TAK1, which activate signaling mediated by JNK and p38, as well as the IκB kinase complex. The IKK complex then activates NF-κB signaling, which leads to the transcription of anti-apoptotic factors-such as FLIP and Bcl-XL-that promote cell survival.
The formation of TNFR1 complex IIa and complex IIb depends on non-ubiquitylated RIPK1. For the formation of complex IIa, ubiquitylated RIPK1 in complex I is deubiquitylated by CYLD. This deubiquitylated RIPK1 dissociates from the membrane-bound complex and moves into the cytosol, where it interacts with TRADD, FADD, Pro-caspase 8 and FLIPL to form complex IIa. By contrast, complex IIb is formed when the RIPK1 in complex I is not ubiquitylated owing to conditions that have resulted in the depletion of cIAPs, which normally ubiquitylate RIPK1. This non-ubiquitylated RIPK1 dissociates from complex I, moves into the cytosol, and assembles with FADD, Pro-caspase 8, FLIPL and RIPK3 (but not TRADD) to form complex IIb. For either complex IIa or complex IIb to prevent necroptosis, both RIPK1 and RIPK3 must be inactivated by the cleavage activity of the Pro-caspase 8-FLIPL heterodimer or fully activated caspase 8. The Pro-caspase 8 homodimer generates active Caspase 8, which is released from complex IIa and complex IIb. This active Caspase 8 then carries out cleavage reactions to activate downstream executioner caspases and thus induce classical apoptosis.
Formation of the complex IIc (necrosome) is initiated either by RIPK1 deubiquitylation mediated by CYLD or by RIPK1 non-ubiquitylation due to depletion of cIAPs, similar to complex IIa and complex IIb formation. RIPK1 recruits numerous RIPK3 molecules. They come together to form amyloid microfilaments called necrosomes. Activated RIPK3 phosphorylates and recruits MLKL, eventually leading to the formation of a supramolecular protein complex at the plasma membrane and necroptosis [1][2].
Reference:
[1]. Brenner D, et al. Regulation of tumour necrosis factor signalling: live or let die.Nat Rev Immunol. 2015 Jun;15(6):362-74.
[2]. Conrad M, et al. Regulated necrosis: disease relevance and therapeutic opportunities.Nat Rev Drug Discov. 2016 May;15(5):348-66.
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