- Signaling Pathways
- TGF-beta/Smad
- TGF-β Receptor
TGF-β Receptor
Transforming growth factor beta receptors
TGF-β receptors (Transforming growth factor-β receptors) are single pass serine/threonine kinase receptors. Transforming growth factor beta (TGF-beta) is a member of a large family of pleiotropic cytokines that are involved in many biological processes, including growth control, differentiation, migration, cell survival, adhesion, and specification of developmental fate, in both normal and diseased states. TGF-beta superfamily members signal through a receptor complex comprising a type II and type I receptor, both serine/threonine kinases.
The type I receptors, referred to as activin receptor-like kinases (ALK), lie at the epicenter of the signaling cascade as they transduce TGF-beta signals to intracellular regulators of transcription known as Smad proteins. ALKs possess an extracellular binding domain, a transmembrane domain, a GS domain that serves as the site of activation by type II receptors, and a kinase domain that activates downstream signaling molecules. ALKs mediate the effect of TGF-beta superfamily on a variety of cellular processes such as proliferation, differentiation, apoptosis, adhesion and migration, and therefore play important roles in many biological processes. Some ALKs have been implicated in several disorders, including tumorigenesis and immune diseases, suggesting that these receptors can be used as drug targets.
TGF-β Receptor Isoform Specific Products
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TGF-β Receptor
(215)
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ALK1
(9)
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ALK2
(31)
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ALK3
(12)
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ALK4
(10)
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ALK5
(31)
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ALK6
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ALK7
(7)
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TGFβR2
(6)
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ACVR2A
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ACVR2B
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BMP
(1)
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GDF15
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TGF-β Receptor Inhibitors
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TGF-β Receptor Agonists
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TGF-β Receptor Antagonists
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TGF-β Receptor Activators
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TGF-β Receptor Modulators
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TGF-β Receptor Inducer
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TGF-β Receptor Degraders
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TGF-β Receptor Controls
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TGF-beta Receptor Proteins
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ALK-3 Proteins
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ALK-6 Proteins
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BMP Type II Receptor (BMPR2) Proteins
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ALK-2/ACVR1 Proteins
(14)
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ALK-4/Activin RIB Proteins
(7)
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ALK-7 Proteins
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Activin A Receptor Type 2A (ACTR-IIA) Proteins
(9)
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Activin A Receptor Type 2B (ACVR2B) Proteins
(10)
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ALK-1/ACVRL1 Proteins
(9)
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Anti-Muellerian Hormone Type-2 Receptor (AMHR2) Proteins
(8)
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TGF-β Receptor 1 Proteins
(7)
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TGF-beta Receptor 2 Proteins
(13)
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Type III TGF-β Receptor Proteins
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ALK-3/CD292 Proteins
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TGF-β Receptor Related Products (346)
Related Products (346)
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Recombinant Proteins (98)
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Antibodies (16)
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TGF-β Receptor Isoform Comparison
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LDN193189 Tetrahydrochloride (Standard)
0 ImagesSynonyms: DM-3189 Tetrahydrochloride (Standard)LDN193189 (DM-3189) Tetrahydrochloride (Standard) is the analytical standard of LDN193189 Tetrahydrochloride (HY-12071A). This product is intended for research and analytical applications. LDN193189 (DM-3189) Tetrahydrochloride is a potent selective BMP type I receptor (BMP I) inhibitor. LDN193189 efficiently inhibits transcriptional activity of the BMP type I receptors ALK2 and ALK3 with IC50 values of 5 nM and 30 nM, respectively. LDN193189 can be used for the research of bone morphogenetic protein signalling, such as fibrodysplasia ossificans progressiva. -
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Nuvisertib hydrochloride
0 ImagesCat. No.: HY-101126ACAS No.: 1418143-09-5Synonyms: TP-3654 hydrochlorideNuvisertib hydrochloride (TP-3654 hydrochloride) is an orally active second-generation pan-PIM kinase inhibitor with Ki values of 5 nM, 239 nM, and 42 nM against PIM-1, PIM-2, and PIM-3, respectively. Nuvisertib hydrochloride inhibits JAK-independent inflammatory and survival signaling pathways, reduces the production of proinflammatory cytokines, restores apoptotic sensitivity, inhibits mTORC1, MYC, and TGF-β signaling pathways, and decreases the expression of fibrosis markers. Nuvisertib hydrochloride selectively impairs the transport function of ABCG2, resensitizes multidrug-resistant cancer cells to cytotoxic drugs, and overcomes JAK2 inhibitor resistance. Nuvisertib hydrochloride can be used in research related to myelofibrosis, renal cell carcinoma, multidrug-resistant cancer, advanced solid tumors, urothelial carcinoma, and prostate adenocarcinoma. -
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Dorsomorphin dihydrochloride (Standard)
0 ImagesSynonyms: Compound C dihydrochloride (Standard); BML-275 dihydrochloride (Standard)Dorsomorphin (dihydrochloride) (Standard) is the analytical standard of Dorsomorphin (dihydrochloride). This product is intended for research and analytical applications. Dorsomorphin (Compound C) dihydrochloride is a potent, selective and ATP-competitive AMPK inhibitor, with a Ki of 109 nM. Dorsomorphin dihydrochloride inhibits BMP pathway by targeting the type I receptors ALK2, ALK3, and ALK6. Dorsomorphin dihydrochloride can reverse autophagy activation and anti-inflammatory effect of Urolithin A (HY-100599). -
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M4K2009 hydrochloride
0 ImagesCat. No.: HY-149591ACAS No.: 2772902-12-0M4K2009 hydrochloride is an orally active, blood-brain barrier permeable type I ALK2 inhibitor, with an IC50 value of 8-13 nM against human ALK2. M4K2009 hydrochloride exhibits moderate off-target inhibitory activity against hERG potassium channels (Potassium Channel), with an IC50 of 8 μM against the human channel. M4K2009 hydrochloride can be used in studies related to diffuse intrinsic pontine glioma. -
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Itacnosertib (Standard)
0 ImagesCat. No.: HY-109179RCAS No.: 1628870-27-8Synonyms: TP-0184 (Standard)Itacnosertib (Standard) is the analytical standard of Itacnosertib (HY-109179). This product is intended for research and analytical applications. Itacnosertib (TP-0184) is the inhibitor for FLT3, ACVR1 (ALK2, IC50=8 nM) and JAK2 (IC50=8540 nM). Itacnosertib exhibits anti-leukemic activity. -
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N-Acetyltaurine hemimagnesium
0 ImagesCat. No.: HY-W587486ACAS No.: 75350-40-2N-Acetyltaurine hemimagnesium is an orally active endogenous sulfonate that is synthesized from taurine and acetate in the renal cortex. N-Acetyltaurine hemimagnesium supports bacterial growth as a sole fixed nitrogen or carbon source. N-Acetyltaurine hemimagnesium buffers acetyl moieties of mitochondrial acetyl‑CoA in skeletal muscle. N-Acetyltaurine hemimagnesium reduces food intake and body weight in obese and lean wild‑type mice in a GFRAL‑dependent manner. N-Acetyltaurine hemimagnesium can be used for the research of diet‑induced obesity, hyperacetatemia and diabetes. -
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