SETD2-IN-1 TFA

  Cat. No.:  DC42459  
Chemical Structure
2411759-92-5
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More than 5000 active chemicals with high quality for research!
Field of application
SETD2-IN-1 TFA is a potent, selective and orally active of SETD2 which is a human histone methyltransferase. SETD2-IN-1 TFA has anti-proliferative effects.
Cas No.: 2411759-92-5
Chemical Name: SETD2-IN-1 TFA
SMILES: O=C(C(N1)=CC2=C1C(C)=CC=C2F)N[C@H]3C[C@@H](N4CCN(C(C)=O)CC4)CCC3.O=C(O)C(F)(F)F
Formula: C24H30F4N4O4
M.Wt: 514.51
Sotrage: Please store the product under the recommended conditions in the Certificate of Analysis.
MSDS
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MSDS_26066_DC42459_2411759-92-5
COA
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Cat. No. Product name Field of application
DC47618 PRMT5-IN-10 PRMT5-IN-10 has promising structure-dependent inhibition of the protein methyltransferase PRMT5:MEP50 complex.
DC47617 EED ligand 1 EED ligand 1 is a diverse, potent, and efficacious inhibitor that target the EED subunit of the polycomb repressive complex 2 (PRC2) methyltransferase.
DC47615 PRMT5-IN-9 PRMT5-IN-9 is a novel PRMT5 inhibitor for treating cancer, with an IC50 of 0.01 μM.
DC47613 PRMT5-IN-12 PRMT5-IN-12 shows remarkable inhibitory activity on PRMT5.
DC47612 PRMT5-IN-11 PRMT5-IN-11 is a promising structure-dependent inhibition of the protein methyltransferase PRMT5:MEP50 complex in the (sub)micromolar range.
DC47611 PRMT5-IN-14 PRMT5-IN-14 is a PRMT5 inhibitor to treat cancer, sickle cell, and hereditary persistence of foetal hemoglobin (HPFH) mutations.
DC47610 PRMT5-IN-3 PRMT5-IN-3 is a PRMT5 inhibitor that exhibits synthetic lethality to tumor cells but produce few side effects combined with DNA damaging agents.
DC47609 PRMT1-IN-1 PRMT1-IN-1 is a PRMT1 inhibitor.
DC47608 EZH2-IN-2 EZH2-IN-2 is a EZH2 inhibitor extracted from patent WO2018133795A1, Compound Example 69, with an IC50 of 64 nM. EZH2-IN-2 can be used for the research of cancer or precancerous condition related to EZH2 activity.
DC47264 MS67 MS67 is a potent and selective WD40 repeat domain protein 5 (WDR5) degrader with a Kd of 63 nM. MS67 is inactive against other protein methyltransferases, kinases, GPCRs, ion channels, and transporters. MS67 shows potent acticancer effects.
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