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Formula | C17H12N4 |
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Molecular Weight | 272.3 | CAS No. | 396129-53-6 | |
Solubility (25°C)* | In vitro | 4-Methylpyridine | 23 mg/mL (84.46 mM) | |
DMSO | 1 mg/mL (3.67 mM) | |||
Water | Insoluble | |||
* <1 mg/ml means slightly soluble or insoluble. * Please note that Selleck tests the solubility of all compounds in-house, and the actual solubility may differ slightly from published values. This is normal and is due to slight batch-to-batch variations. * Room temperature shipping (Stability testing shows this product can be shipped without any cooling measures.) |
Description | LY364947 (HTS 466284) is a potent ATP-competitive inhibitor of TGFβR-I with IC50 of 59 nM in a cell-free assay, shows 7-fold selectivity over TGFβR-II. | ||||||||||
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In vitro | LY364947 is an ATP competitive and tight-binding inhibitor, inhibiting phosphorylation of P-Smad3 by TGFβR-I kinase with Ki of 28 nM. LY364947 inhibits in vivo Smad2 phosphorylation within the NMuMg cells with IC50 of 135 nM. LY364947 reverses TGF-β-mediated growth inhibition in NMuMg cells with IC50 of 0.218 μM. LY364947 potentiates the xVent2-lux BMP4 response in NMuMg cells by 30% at concentrations as low as 0.25 μM. LY364947 (2 μM) prevents TGF-β-induced epithelial−mesenchymal transition in NMuMg cells. [3] LY364947 (3 μM) induces expression of Prox1 and LYVE-1 in almost all HDLECs after 24 hours. [4] LY364947 promotes nuclear export of Foxo3a, with low Smad2/3 and high Akt phosphorylation levels in leukaemia-initiating cells. LY364947 (< 20 μM) suppresses leukaemia-initiating cells colony-forming ability after co-culture with OP-9 stromal cells. [5] | ||||||||||
In vivo | LY364947 (1 mg/kg i.p.) accelerates lymphangiogenesis, as evidence by significantly increased the LYVE-1-positive areas, in a mouse model of chronic peritonitis. LY364947 (1 mg/kg i.p.) significantly increases the LYVE-1-positive areas in tumor tissues in tumor xenograft models using BxPC3 pancreatic adenocarcinoma cells. [4] LY364947 (25 mg /kg) increases p-Akt and decreases nuclear Foxo3a in leukaemia-initiating cells in CML-affected mice. [5] |
Kinase Assay: |
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Cell Assay: |
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Data from [Chem Biol Interact, 2014, 217, 1-8]
Data from [Data independently produced by , , Nat Commun, 2016, 7:12047]
Data from [Data independently produced by , , Cancer Lett, 2017, 403:86-97]
Data from [Data independently produced by , , Int J Mol Med, 2016, 38(1):172-82]
Automated, High-Throughput Phenotypic Screening and Analysis Platform to Study Pre- and Post-Implantation Morphogenesis in Stem Cell-Derived Embryo-Like Structures [ Adv Sci (Weinh), 2024, 11(4):e2304987] | PubMed: 37991133 |
Genomic and transcriptomic profiling of peripheral T cell lymphoma reveals distinct molecular and microenvironment subtypes [ Cell Rep Med, 2024, 5(2):101416] | PubMed: 38350451 |
PAX1 represses canonical Wnt signaling pathway and plays dual roles during endoderm differentiation [ Cell Commun Signal, 2024, 22(1):242] | PubMed: 38664733 |
MHC-II presentation by oral Langerhans cells impacts intraepithelial Tc17 abundance and Candida albicans oral infection via CD4 T cells [ Front Oral Health, 2024, 5:1408255] | PubMed: 38872986 |
Transcriptome-based chemical screens identify CDK8 as a common barrier in multiple cell reprogramming systems [ Cell Rep, 2023, 42(6):112566] | PubMed: 37235474 |
A TGF-β-responsive enhancer regulates SRC expression and epithelial-mesenchymal transition-associated cell migration [ J Cell Sci, 2023, 136(15)jcs261001] | PubMed: 37439249 |
A TGF-β-responsive enhancer regulates SRC expression and epithelial-mesenchymal transition-associated cell migration [ J Cell Sci, 2023, 136(15)jcs261001] | PubMed: 37439249 |
Cancer apelin receptor suppresses vascular mimicry in malignant melanoma [ Pathol Oncol Res, 2023, 29:1610867] | PubMed: 36776217 |
A proliferative to invasive switch is mediated by srGAP1 downregulation through the activation of TGF-β2 signaling [ Cell Rep, 2022, 40(12):111358] | PubMed: 36130489 |
Gene silencing by EZH2 suppresses TGF-β activity within the decidua to avert pregnancy-adverse wound healing at the maternal-fetal interface [ Cell Rep, 2022, 38(5):110329] | PubMed: 35108527 |
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