- Voies de signalisation
- 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
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TNFRSF3/CD18
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TNFRSF4
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TNFRSF5/CD40
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TNFRSF6/Fas/CD95
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TNFRSF7/CD27
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TNFRSF9/4-1BB/CD137
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TNFRSF10B/DR5/CD262
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TNFRSF12A/TWEAK
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TNFRSF16/NGF Receptor/CD271
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TNFRSF18/GITR/CD357
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TNF Receptor Inhibitors
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TNF Receptor Superfamily Proteins
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TNF Receptor Produits associés (1142)
Produits associés (1142)
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Protéines Recombinantes (283)
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Anticorps (23)
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Voie de signalisation TNF Receptor
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TNF Receptor Isoform Comparison
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Apratastat (Standard)
0 ImagesCat. No.: HY-119307RCAS No.: 287405-51-0Synonyms: TMI-005 (Standard)Apratastat (Standard) is the analytical standard of Apratastat. This product is intended for research and analytical applications. Apratastat (TMI-005) is an orally active, non-selective and reversible TACE/MMPs inhibitor, can inhibit inhibit the release of TNF-α. Apratastat has the potential to overcome radiotherapy-resistance in non-small cell lung cancer (NSCLC). Apratastat is a click chemistry reagent, it contains an Alkyne group and can undergo copper-catalyzed azide-alkyne cycloaddition (CuAAc) with molecules containing Azide groups. -
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Forsythoside B (Standard)
0 ImagesForsythoside B (Standard) is the analytical standard of Forsythoside B. This product is intended for research and analytical applications. Forsythoside B is a phenylethanoid glycoside isolated from Forsythia suspensa (Thunb.) Vahl, a Chinese folk medicinal plant for treating inflammatory diseases and promoting blood circulation. Forsythoside B could inhibit TNF-alpha, IL-6, IκB and modulate NF-κB. -
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Balanophonin
0 ImagesCat. No.: HY-N10782CAS No.: 80286-36-8Balanophonin is an anti-inflammatory and anti-cancer agent. Balanophonin inhibits microglial activation and neurodegeneration via inhibiting activated microglia-induced apoptosis. -
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Umckalin (Standard)
0 ImagesCat. No.: HY-N8712RCAS No.: 43053-62-9Umckalin (Standard) is the analytical standard of Umckalin (HY-N8712). Umckalin is Coumarin (HY-N0709) derivative that exhibits anti-inflammatory properties. Umckalin reduces phosphorylation of p38 MAPK, JNK, and ERK, lowers TNF-α, IL-6, IL-1β, NO, and PGE2 production. Umckalin can be used for the research of chronic inflammatory diseases. -
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2-Hydroxy-5-(2-nitrovinyl)benzoic acid
0 ImagesCat. No.: HY-184788CAS No.: 42571-07-3Synonyms: SANA2-Hydroxy-5-(2-nitrovinyl) benzoic acid (SANA) is an orally active pleiotropic anti-inflammatory metabolic modulator. 2-Hydroxy-5-(2-nitrovinyl) benzoic acid inhibits NF-κB, activates Nrf2/Keap1 and AMPK, suppresses inflammasome activity, induces thermogenesis, reverses insulin resistance and alleviates skin graft rejection. 2-Hydroxy-5-(2-nitrovinyl) benzoic acid can be used in research related to obesity, glucose intolerance, skin graft rejection and insulin resistance. -
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γ-Hexalactone (Standard)
0 ImagesCat. No.: HY-W015892RCAS No.: 695-06-7Synonyms: γ-Caprolactone (Standard)γ-Hexalactone (Standard) is the analytical standard of γ-Hexalactone (γ-Caprolactone) (HY-W015892). This product is intended for research and analytical applications. γ-Hexalactone is a gamma-lactone found in ripe fruits. γ-Hexalactone induces DNA damage in human lymphocytes and HepG2 cells, modulates cytokine secretion in human lymphocytes, and reduces recombinant PON1 activity. γ-Hexalactone serves as a dose-dependent oviposition inhibitor against Bactrocera oleae. γ-Hexalactone can be used for the research of Bactrocera oleae pest management. -
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Dodecane (Standard)
0 ImagesSynonyms: Ba 51-090453 (Standard)Dodecane (Standard) is the analytical standard of Dodecane. This product is intended for research and analytical applications. Dodecane (Ba 51-090453) is an ester product. Dodecane is an aliphatic hydrocarbon. Dodecane can result in a high TNF-α expression and transepidermal waterloss (TEWL). -
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Grosvenorine (Standard)
0 ImagesCat. No.: HY-N3031RCAS No.: 156980-60-8Grosvenorine (Standard) is the analytical standard of Grosvenorine. This product is intended for research and analytical applications. Grosvenorine is an orally active flavonoid glycoside found in S. grosvenorii. Grosvenorine exhibits antibacterial, antioxidant and antiinflammation activities. Grosvenorine can induce apoptosis and increases anti-apoptotic Bcl-2 protein expression and reduces pro-apoptotic P53 protein expression in gastric tissues. Grosvenorine enhances mucin/glycoprotein secretion, regulates gastric pH, and reduces gastric lesion incidence.Grosvenorine increases glutathione peroxidase, catalase, and SOD levels, reduces lipid peroxidation (MDA), and lowers TNF-α and IL-6 levels. Grosvenorine can be used for the researches of bacterial infection and Gastric ulcer. -
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Hispidol (Standard)
0 ImagesCat. No.: HY-102040RCAS No.: 5786-54-9Synonyms: (Z)-Hispidol (Standard)Hispidol (Standard) is the analytical standard of Hispidol. This product is intended for research and analytical applications. Hispidol ((Z)-Hispidol) is a potential therapeutic for inflammatory bowel disease; inhibits TNF-α induced adhesion of monocytes to colon epithelial cells with an IC50 of 0.50 μM. -
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Myristoyllysophosphatidylcholine
0 ImagesCat. No.: HY-165316CAS No.: 13699-45-1Myristoyllysophosphatidylcholine is a NLRP3 inflammasome inhibitor with multiple activities including anti-inflammatory and antioxidant effects. Myristoyllysophosphatidylcholine inhibits LPS-induced NLRP3 inflammasome activation, reduces pro-inflammatory cytokine secretion, decreases ROS and MDA levels, alleviates lung tissue and cell damage, and mediates apoptosis. Myristoyllysophosphatidylcholine serves as a myristate donor for myristoylation of the Glucose-6-Phosphate Isomerase (GPI) anchor in Trypanosoma brucei and undergoes hydrolysis. Myristoyllysophosphatidylcholine acts as a biomarker for the severity of community-acquired pneumonia. Myristoyllysophosphatidylcholine can be used in research related to diseases such as community-acquired pneumonia and acute lung injury. -
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Schisantherin B (Standard)
0 ImagesCat. No.: HY-N0695RCAS No.: 58546-55-7Synonyms: Gomisin-B (Standard); Wuweizi ester-B (Standard); Schisantherin-B (Standard)Schisantherin B (Gomisin-B) (Standard) is the analytical standard of Schisantherin B. This product is intended for research and analytical applications. Schisantherin B is a lignan compound and one of the active components of Schisandra chinensis. Schisantherin B activates the PI3K/AKT signaling pathway, restores the activity of GSK3β, and reduces the hyperphosphorylation of tau protein in hippocampal and cerebral cortical tissues. Schisantherin B upregulates the level of GLT-1, decreases the expression of pro-inflammatory cytokines TNF-α/IL-1β/IL-6, upregulates the expression of IL-10, and inhibits cell apoptosis. Schisantherin B is applicable to the research of spinal cord injury, Alzheimer's disease and depression. -
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GYY4137 (Standard)
0 ImagesCat. No.: HY-107632RCAS No.: 106740-09-4GYY4137 (Standard) is the analytical standard of GYY4137 (HY-107632). This product is intended for research and analytical applications. GY4137 is a sustained-release H2S donor possessing vasodilatory, antihypertensive, and anti-inflammatory activities. GY4137 can inhibit cell growth, induce apoptosis, and cause cell cycle arrest by blocKing the STAT3 pathway, demonstrating potent anticancer activity. -
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ST-899
0 ImagesCat. No.: HY-176466CAS No.: 143484-41-7ST-899 is a novel platelet-activating factor (PAF) receptor antagonist. ST-899 can significantly reduce the mortality of mice with endotoxin (LPS)-induced shock. ST-899 can significantly inhibit the increase in serum tumor necrosis factor (TNF) levels induced by LPS, but has no effect on interleukin-6 (IL-6). The regulatory mechanism of ST-899 is to block the positive feedback loop between PAF and TNF, thereby reducing the inflammatory response. ST-899 can be used to study inflammatory diseases such as septic shock. -
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Aspartyl-alanyl-diketopiperazine (Standard)
0 ImagesCat. No.: HY-107091RCAS No.: 110954-19-3Synonyms: DA-DKP (Standard)Aspartyl-alanyl-diketopiperazine (DA-DKP) (Standard) is the analytical standard of Aspartyl-alanyl-diketopiperazine (HY-107091). This product is intended for research and analytical applications. Aspartyl-alanyl-diketopiperazine is an immunomodulatory molecule and anti-inflammatory agent. Aspartyl-alanyl-diketopiperazine increases the level of active Rap1 in activated human T lymphocytes and reduces the phosphorylation levels of Ras, ATF-2, c-jun, MEK1, MEKK1, ERK1, JNK1,2,3, p38MAPK and MEF-2. Aspartyl-alanyl-diketopiperazine inhibits the production of pro-inflammatory cytokines, including the levels of IFN-γ and TNF-α. Aspartyl-alanyl-diketopiperazine can be used in studies of inflammatory immune responses. -
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KR-33493 (Standard)
0 ImagesCat. No.: HY-100755RCAS No.: 1021497-97-1 -
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Xylobiose (Standard)
0 ImagesSynonyms: 1,4-β-D-Xylobiose (Standard); 1,4-D-Xylobiose (Standard)Xylobiose (1,4-β-D-Xylobiose; 1,4-D-Xylobiose) is an orally active Claudin 2/CLDN2 inhibitor and HSP27 inducer. Xylobiose works by regulating intestinal barrier function and glucose and lipid metabolism-related signaling pathways. Xylobiose inhibits CLDN2 expression to reduce intestinal permeability, induces HSP27 to enhance cell protection, and regulates the miR-122a/miR-33a axis to inhibit liver lipid synthesis and improve insulin resistance. Xylobiose can strengthen intestinal barrier integrity, reduce blood sugar and blood lipid levels, and reduce oxidative stress and inflammatory response. Xylobiose can be used in the study of type 2 diabetes and metabolic syndrome. -
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- Nomilin (Standard)
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ZBP1 PROTAC-1
0 ImagesCat. No.: HY-185102ZBP1 PROTAC-1 is a Z-DNA-binding protein 1 (ZBP1) PROTAC degrader with a DC50 of 25.69 nM. ZBP1 PROTAC-1 consists of a DNA aptamer that specifically binds to ZBP1 and an E3 enzyme-recruiting moiety. ZBP1 PROTAC-1 combines the specificity and covalent binding ability of DNA aptamers with the PROTAC-mediated degradation function. By degrading ZBP1, ZBP1 PROTAC-1 inhibits the phosphorylation of RIPK3/MLKL to necrotic apoptosis and reduces the levels of proinflammatory cytokines (IL-18, IL-1β, IL-6, TNF-α, IFN-β). ZBP1 PROTAC-1 can be used in the research of viral pneumonia and influenza A H1N1 virus infection. -
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Roburic acid (Standard)
0 ImagesRoburic acid (Standard) is the analytical standard of Roburic acid. This product is intended for research and analytical applications. Roburic acid acts as an anti-inflammatory, anti-tumor and osteoclastogenesis inhibitor, with a Ki of 7.066 μM against human TNF, an IC50 of 9 μM against human COX-2, and an IC50 of 5 μM against ovine COX-1. Roburic acid reduces the production of inflammatory mediators such as NO and IL-6 in macrophages by inhibiting the NF-κB and MAPK (p38/JNK) pathways. By competitively inhibiting the TNF-TNF-R1 interaction, Roburic acid blocks the downstream NF-κB signaling pathway, thereby inducing cell cycle arrest and apoptosis in cancer cells. Roburic acid specifically inhibits osteoclastogenesis and bone resorption by suppressing the RANKL/TRAF6/NF-κB/NFATc1 axis. Roburic acid can be used in research related to osteolytic diseases such as osteoporosis, colorectal cancer and inflammatory diseases. -
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Cl-Necrostatin-1
0 ImagesCat. No.: HY-168770CAS No.: 862377-51-3Cl-Necrostatin-1 is a RIPK1 inhibitor. Cl-Necrostatin-1 can also inhibit TNF-α-induced necroptosis in Jurkat cells deficient in Fas-associated death domain protein (FADD; EC50 = 180 nM), a modification that prevents caspase activation in response to death-domain receptor signaling. Cl-Necrostatin-1 can also reduce infarct size in a mouse model of middle cerebral artery occlusion (MCAO). Cl-Necrostatin-1 is used for research in cardiovascular and cerebrovascular diseases. -
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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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