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SR-1114 Sale

目录号 : GC64920

SR-1114 是一种首创的 PROTAC ENL 降解剂。 SR-1114 在 MV4;11、MOLM-13 和 OCI/AML-2 细胞中引起 ENL 的快速降解,DC50 分别为 150 nM、311 nM 和 1.65 μM。

SR-1114 Chemical Structure

Cas No.:2769141-82-2

规格 价格 库存 购买数量
5 mg
¥8,280.00
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10 mg
¥13,500.00
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产品描述

SR-1114 is a first-in-class PROTAC ENL degrader. SR-1114 elicits rapid, CRBN-dependent degradation of ENL with DC50s of 150 nM, 311 nM, and 1.65 μM in MV4;11 , MOLM-13, and OCI/AML-2 cells, respectively[1].

[1]. Leopold Garnar-Wortzel, et al. Chemical Inhibition of ENL/AF9 YEATS Domains in Acute Leukemia. ACS Cent Sci. 2021 May 26;7(5):815-830.

Chemical Properties

Cas No. 2769141-82-2 SDF Download SDF
分子式 C39H42N8O11S 分子量 830.86
溶解度 储存条件 Store at -20°C
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1 mM 1.2036 mL 6.0179 mL 12.0357 mL
5 mM 0.2407 mL 1.2036 mL 2.4071 mL
10 mM 0.1204 mL 0.6018 mL 1.2036 mL
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Research Update

Chemical Inhibition of ENL/AF9 YEATS Domains in Acute Leukemia

ACS Cent Sci 2021 May 26;7(5):815-830.PMID:34079898DOI:PMC8161486

Transcriptional coregulators, which mediate chromatin-dependent transcriptional signaling, represent tractable targets to modulate tumorigenic gene expression programs with small molecules. Genetic loss-of-function studies have recently implicated the transcriptional coactivator, ENL, as a selective requirement for the survival of acute leukemia and highlighted an essential role for its chromatin reader YEATS domain. Motivated by these discoveries, we executed a screen of nearly 300,000 small molecules and identified an amido-imidazopyridine inhibitor of the ENL YEATS domain (IC50 = 7 μM). Improvements to the initial screening hit were enabled by adopting and expanding upon a SuFEx-based approach to high-throughput medicinal chemistry, ultimately demonstrating that it is compatible with cell-based drug discovery. Through these efforts, we discovered SR-0813, a potent and selective ENL/AF9 YEATS domain inhibitor (IC50 = 25 nM). Armed with this tool and a first-in-class ENL PROTAC, SR-1114, we detailed the biological response of AML cells to pharmacological ENL disruption for the first time. Most notably, we discovered that ENL YEATS inhibition is sufficient to selectively suppress ENL target genes, including HOXA9/10, MYB, MYC, and a number of other leukemia proto-oncogenes. Cumulatively, our study establishes YEATS domain inhibition as a viable approach to disrupt the pathogenic function of ENL in acute leukemia and provides the first thoroughly characterized chemical probe for the ENL YEATS domain.