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急性白血病中ENL/AF9 YEATS结构域的化学抑制作用

Chemical Inhibition of ENL/AF9 YEATS Domains in Acute Leukemia.

作者信息

Garnar-Wortzel Leopold, Bishop Timothy R, Kitamura Seiya, Milosevich Natalia, Asiaban Joshua N, Zhang Xiaoyu, Zheng Qinheng, Chen Emily, Ramos Anissa R, Ackerman Christopher J, Hampton Eric N, Chatterjee Arnab K, Young Travis S, Hull Mitchell V, Sharpless K Barry, Cravatt Benjamin F, Wolan Dennis W, Erb Michael A

机构信息

Department of Chemistry, The Scripps Research Institute, La Jolla, California 92037, United States.

Department of Molecular Medicine, The Scripps Research Institute, La Jolla, California 92037, United States.

出版信息

ACS Cent Sci. 2021 May 26;7(5):815-830. doi: 10.1021/acscentsci.0c01550. Epub 2021 Apr 30.

Abstract

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 (IC = 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 (IC = 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 , , , 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.

摘要

转录共调节因子介导依赖染色质的转录信号传导,是用小分子调节致癌基因表达程序的可控靶点。基因功能丧失研究最近表明,转录共激活因子ENL是急性白血病生存的选择性必需因子,并突出了其染色质阅读器YEATS结构域的重要作用。受这些发现的启发,我们对近30万个小分子进行了筛选,鉴定出一种ENL YEATS结构域的酰胺基咪唑并吡啶抑制剂(IC = 7 μM)。通过采用和扩展基于SuFEx的高通量药物化学方法,对最初筛选得到的化合物进行了优化,最终证明它与基于细胞的药物发现兼容。通过这些努力,我们发现了SR-0813,一种强效且选择性的ENL/AF9 YEATS结构域抑制剂(IC = 25 nM)。有了这个工具和首个同类的ENL PROTAC(SR-1114),我们首次详细阐述了AML细胞对ENL药理学破坏的生物学反应。最值得注意的是,我们发现抑制ENL YEATS足以选择性地抑制ENL靶基因,包括 、 、 以及许多其他白血病原癌基因。总的来说,我们的研究确立了抑制YEATS结构域是破坏ENL在急性白血病中致病功能的可行方法,并为ENL YEATS结构域提供了首个经过充分表征的化学探针。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/10ac/8161486/79aace22e03f/oc0c01550_0001.jpg

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