
SM1-71
CAS No. 2088179-99-9
SM1-71( —— )
Catalog No. M34874 CAS No. 2088179-99-9
SM1-71 is a potent multi-targeted acrylamide-modified TAK1 inhibitor that inhibits MKNK2, MAP2K1/2/3/4/6/7, GAK, AAK1, BMP2K, MAP3K7, MAPKAPK5, GSK3A/B, MAPK1/3, SRC, YES1, FGFR1, ZAK (MLTK), MAP3K1, LIMK1 and RSK2.
Purity : >98% (HPLC)






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Biological Information
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Product NameSM1-71
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NoteResearch use only, not for human use.
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Brief DescriptionSM1-71 is a potent multi-targeted acrylamide-modified TAK1 inhibitor that inhibits MKNK2, MAP2K1/2/3/4/6/7, GAK, AAK1, BMP2K, MAP3K7, MAPKAPK5, GSK3A/B, MAPK1/3, SRC, YES1, FGFR1, ZAK (MLTK), MAP3K1, LIMK1 and RSK2.
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DescriptionSM1-71 (compound 5) is a potent TAK1 inhibitor, with a Ki of 160 nM, it also can covalently inhibit MKNK2, MAP2K1/2/3/4/6/7, GAK, AAK1, BMP2K, MAP3K7, MAPKAPK5, GSK3A/B, MAPK1/3, SRC, YES1, FGFR1, ZAK (MLTK), MAP3K1, LIMK1 and RSK2. SM1-71 can inhibit proliferation of multiple cancer cell lines.
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In VitroSM1-71 (0.001-100 μM; 72 h) potently inhibits the proliferation of H23 and Calu-6 non-small cell lung cancer cell lines with a concentration-dependent manner.SM1-71 (72 h) induces potent cytotoxicity with nanomolar values for GR50 and negative GRmax values in eight of 11 cancer cell lines.Cell Viability Assay Cell Line:H23-KRASG12C and Calu-6-KRASQ61K cells Concentration:0.001, 0.01, 0.1, 1, 10, 100 μM Incubation Time:72 hours Result:Inhibited proliferation of H23-KRASG12C and Calu-6-KRASQ61K cells with IC50s of 0.4 and 0.3 μM, respectively.
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In Vivo——
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Synonyms——
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PathwayMAPK/ERK Signaling
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Targetp38 MAPK
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RecptorMAPK | AAK1 (AP2 associated kinase 1) | TGF-beta/Smad | LIM Kinase | Serine/threonin kinase
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Research Area——
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Indication——
Chemical Information
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CAS Number2088179-99-9
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Formula Weight463.96
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Molecular FormulaC24H26ClN7O
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Purity>98% (HPLC)
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SolubilityIn Vitro:?DMSO : 125 mg/mL (269.42 mM; Ultrasonic )
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SMILESCN1CCN(CC1)c1ccc(Nc2ncc(Cl)c(Nc3ccccc3NC(=O)C=C)n2)cc1
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Chemical Name——
Shipping & Storage Information
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Storage(-20℃)
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ShippingWith Ice Pack
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Stability≥ 2 years
Reference
1. Rao S, et, al. Leveraging Compound Promiscuity to Identify Targetable Cysteines within the Kinome. Cell Chem Biol. 2019 Jun 20; 26(6): 818-829.e9.?
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