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Submit ReviewUNC 2400 is a negative control of UNC 1999. Exhibits 1000-fold lower potency than active analog (IC50 values are 62 and >200 μM for EZH1 and EZH2, respectively).
Active Analog also available.
This compound is supplied in conjunction with the Structural Genomics Consortium. For further characterization details, please visit the UNC 1999 probe summary on the SGC website.
UNC 2400 is also offered as part of the Tocriscreen Epigenetics Library. 了解 Tocris 化合物库的更多信息。
分子量 | 597.79 |
公式 | C35H47N7O2 |
储存 | Store at +4°C |
纯度 | ≥98% (HPLC) |
CAS Number | 1433200-49-7 |
PubChem ID | 91691116 |
InChI Key | IFSQHIRDVVFJSQ-UHFFFAOYSA-N |
Smiles | CC(C)N1CCN(C2=NC=C(C3=CC(N(C(C)C)N=C4)=C4C(C(N(C)CC5=C(CCC)C=C(C)N(C)C5=O)=O)=C3)C=C2)CC1 |
上方提供的技术数据仅供参考。批次相关数据请参见分析证书。
Tocris products are intended for laboratory research use only, unless stated otherwise.
参考文献是支持产品生物活性的出版物。
Konze et al (2013) An orally bioavailable chemical probe of the lysine methyltransferases EZH2 and EZH1. ACS Chem.Biol. 8 1324 PMID: 23614352
Xu et al (2015) Selective inhibition of EZH2 and EZH1 enzymatic activity by a small molecule suppresses MLL-rearranged leukemia. Blood 125 346 PMID: 25395428
关键词: UNC 2400, UNC 2400 supplier, UNC2400, Negative, controls, UNC1999, EZH1, EZH2, histone, methyltransferase, PRC2, polycomb, repressive, complex, 2, Lysine, Methyltransferases, 4905, Tocris Bioscience
引用文献是使用了 Tocris 产品的出版物。 UNC 2400 的部分引用包括:
Chagraoui et al (2018) SCL/TAL1 cooperates with Polycomb RYBP-PRC1 to suppress alternative lineages in blood-fated cells. Nat Commun 9 5375 PMID: 30560907
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Tocris offers the following scientific literature in this area to showcase our products. We invite you to request* your copy today!
*请注意,Tocris 仅会向正规科研企业/机构地址发送文献。
Written by Susanne Müller-Knapp and Peter J. Brown, this review gives an overview of the development of chemical probes for epigenetic targets, as well as the impact of these tool compounds being made available to the scientific community. In addition, their biological effects are also discussed. Epigenetic compounds available from Tocris are listed.
Written by Kirsty E. Clarke, Victoria B. Christie, Andy Whiting and Stefan A. Przyborski, this review provides an overview of the use of small molecules in the control of stem cell growth and differentiation. Key signaling pathways are highlighted, and the regulation of ES cell self-renewal and somatic cell reprogramming is discussed. Compounds available from Tocris are listed.
This poster summarizes the main metabolic pathways in cancer cells and highlights potential targets for cancer therapeutics. Genetic changes and epigenetic modifications in cancer cells alter the regulation of cellular metabolic pathways providing potential cancer therapeutic targets.
This poster summarizes the main epigenetic targets in cancer. The dysregulation of epigenetic modifications has been shown to result in oncogenesis and cancer progression. Unlike genetic mutations, epigenetic alterations are considered to be reversible and thus make promising therapeutic targets.