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PAF1与ENL/AF9 YEATS抑制之间的化学遗传相互作用。

A chemical-genetic interaction between PAF1 and ENL/AF9 YEATS inhibition.

作者信息

Barta Paige A, Garnar-Wortzel Leopold, Bishop Timothy R, Hayward Rachel E, Hargis Lauren M, Shaum James B, Kwok Hui Si, Liau Brian B, Cravatt Benjamin F, Erb Michael A

出版信息

bioRxiv. 2025 Sep 10:2025.09.09.675200. doi: 10.1101/2025.09.09.675200.

Abstract

Transcriptional regulatory proteins are frequent drivers of oncogenesis and common targets for drug discovery. The transcriptional co-activator, ENL, which is localized to chromatin through its acetyllysine-binding YEATS domain, is preferentially required for the survival and pathogenesis of acute leukemia. Small molecules that inhibit the ENL YEATS domain show anti-leukemia effects in preclinical models, which is thought to be caused by the downregulation of pro-leukemic ENL target genes. However, the transcriptional effects of ENL YEATS domain inhibitors have not been studied in models of intrinsic or acquired resistance and, therefore, the connection between proximal transcriptional effects and downstream anti-proliferative response is poorly understood. To address this, we identified models of intrinsic and acquired resistance and used them to study the effects of ENL YEATS domain inhibitors. We first discovered that ENL YEATS domain inhibition produces similar transcriptional responses in naive models of sensitive and resistant leukemia. We then performed a CRISPR/Cas9-based genetic modifier screen and identified in-frame deletions of the essential transcriptional regulator, PAF1, that confer resistance to ENL YEATS domain inhibitors. Using these drug-resistance alleles of to construct isogenic models, we again found that the downregulation of ENL target genes is shared in both sensitive and resistant leukemia. Altogether, these data support the conclusion that the suppression of ENL target genes is not sufficient to explain the anti-leukemia effects of ENL antagonists.

摘要

转录调节蛋白是肿瘤发生的常见驱动因素,也是药物研发的常见靶点。转录共激活因子ENL通过其乙酰赖氨酸结合YEATS结构域定位于染色质,是急性白血病生存和发病机制所优先需要的。抑制ENL YEATS结构域的小分子在临床前模型中显示出抗白血病作用,这被认为是由促白血病ENL靶基因的下调引起的。然而,ENL YEATS结构域抑制剂的转录作用尚未在内在或获得性耐药模型中进行研究,因此,近端转录作用与下游抗增殖反应之间的联系尚不清楚。为了解决这个问题,我们确定了内在和获得性耐药模型,并利用它们来研究ENL YEATS结构域抑制剂的作用。我们首先发现,在敏感和耐药白血病的原始模型中,ENL YEATS结构域抑制产生相似的转录反应。然后,我们进行了基于CRISPR/Cas9的基因修饰筛选,确定了必需转录调节因子PAF1的框内缺失,这些缺失赋予了对ENL YEATS结构域抑制剂的抗性。利用这些耐药等位基因构建同基因模型,我们再次发现,ENL靶基因的下调在敏感和耐药白血病中都存在。总之,这些数据支持这样的结论,即抑制ENL靶基因不足以解释ENL拮抗剂的抗白血病作用。

相似文献

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Chemical Inhibition of ENL/AF9 YEATS Domains in Acute Leukemia.急性白血病中ENL/AF9 YEATS结构域的化学抑制作用
ACS Cent Sci. 2021 May 26;7(5):815-830. doi: 10.1021/acscentsci.0c01550. Epub 2021 Apr 30.

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