Department of Systems Biology, Beckman Research Institute, City of Hope Comprehensive Cancer Center, Duarte, CA, 91010, USA.
Division of Epigenetic and Transcriptional Engineering, Beckman Research Institute, City of Hope Comprehensive Cancer Center, Duarte, CA, 91010, USA.
Adv Sci (Weinh). 2023 Jun;10(17):e2206584. doi: 10.1002/advs.202206584. Epub 2023 Apr 19.
Epigenetic dysregulation is reported in multiple cancers including Ewing sarcoma (EwS). However, the epigenetic networks underlying the maintenance of oncogenic signaling and therapeutic response remain unclear. Using a series of epigenetics- and complex-focused CRISPR screens, RUVBL1, the ATPase component of NuA4 histone acetyltransferase complex, is identified to be essential for EwS tumor progression. Suppression of RUVBL1 leads to attenuated tumor growth, loss of histone H4 acetylation, and ablated MYC signaling. Mechanistically, RUVBL1 controls MYC chromatin binding and modulates the MYC-driven EEF1A1 expression and thus protein synthesis. High-density CRISPR gene body scan pinpoints the critical MYC interacting residue in RUVBL1. Finally, this study reveals the synergism between RUVBL1 suppression and pharmacological inhibition of MYC in EwS xenografts and patient-derived samples. These results indicate that the dynamic interplay between chromatin remodelers, oncogenic transcription factors, and protein translation machinery can provide novel opportunities for combination cancer therapy.
表观遗传失调在多种癌症中都有报道,包括尤文肉瘤(EwS)。然而,维持致癌信号和治疗反应的表观遗传网络仍不清楚。本研究通过一系列专注于表观遗传学和复合物的 CRISPR 筛选,鉴定出 RUVBL1(NuA4 组蛋白乙酰转移酶复合物的 ATP 酶组件)对于 EwS 肿瘤进展是必需的。抑制 RUVBL1 会导致肿瘤生长减弱、组蛋白 H4 乙酰化丧失和 MYC 信号的消融。在机制上,RUVBL1 控制 MYC 染色质结合,并调节 MYC 驱动的 EEF1A1 表达和蛋白质合成。高密度 CRISPR 基因体扫描确定了 RUVBL1 中与 MYC 相互作用的关键残基。最后,本研究揭示了 RUVBL1 抑制与 MYC 药理学抑制在 EwS 异种移植和患者来源样本中的协同作用。这些结果表明,染色质重塑因子、致癌转录因子和蛋白质翻译机制之间的动态相互作用为联合癌症治疗提供了新的机会。