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Chemical inhibition of ENL/AF9 YEATS domains in acute leukemia

Authors :
Benjamin F. Cravatt
Qinheng Zheng
Leopold Garnar-Wortzel
Eric N. Hampton
Seiya Kitamura
Anissa R. Ramos
Michael A. Erb
Joshua N. Asiaban
Natalia Milosevich
K. Barry Sharpless
Xiaoyu Zhang
Emily Chen
Travis S. Young
Timothy R. Bishop
Arnab K. Chatterjee
Christopher J. Ackerman
Dennis W. Wolan
Mitchell V. Hull
Publication Year :
2020
Publisher :
Cold Spring Harbor Laboratory, 2020.

Abstract

Transcriptional co-regulators, 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 co-activator, 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). Leveraging a SuFEx-based high-throughput approach to medicinal chemistry optimization, we discovered SR-0813 (IC50 = 25 nM), a potent and selective ENL/AF9 YEATS domain inhibitor that exclusively inhibits the growth of ENL-dependent leukemia cell lines. Armed with this tool and a first-in-class ENL PROTAC, SR-1114, we detailed the response of AML cells to pharmacological ENL disruption for the first time. Most notably, displacement of ENL from chromatin by SR-0813 elicited a strikingly selective suppression of ENL target genes, including HOXA9/10, MYB, MYC and a number of other leukemia proto-oncogenes. Our study reproduces a number of key observations previously made by CRISPR/Cas9 loss of function and dTAG-mediated degradation, and therefore, both reinforces ENL as an emerging leukemia target and validates SR-0813 as a high-quality chemical probe.

Details

Database :
OpenAIRE
Accession number :
edsair.doi...........c5d4cf4198bd8dc8c44f5702413eca61
Full Text :
https://doi.org/10.1101/2020.12.01.406694