神经母细胞瘤
极光激酶
极光抑制剂
癌症研究
染色质
激酶
极光A激酶
组蛋白H3
组蛋白
细胞生物学
生物
细胞周期
细胞凋亡
遗传学
DNA
细胞培养
作者
Isabelle Roeschert,Evon Poon,Anton G. Henssen,Heathcliff Dorado García,Marco Gatti,Celeste Giansanti,Yann Jamin,Carsten P. Ade,Peter Gallant,Christina Schülein‐Völk,Petra Beli,Mark W. Richards,Mathias T. Rosenfeldt,Matthias Altmeyer,John Anderson,Angelika Eggert,Matthias Dobbelstein,Richard Bayliss,Louis Chesler,Gabriele Büchel
出处
期刊:Nature cancer
[Nature Portfolio]
日期:2021-02-11
卷期号:2 (3): 312-326
被引量:99
标识
DOI:10.1038/s43018-020-00171-8
摘要
Amplification of MYCN is the driving oncogenic change in a subset of high-risk neuroblastomas. The MYCN protein and the Aurora-A kinase form a complex during the S phase that stabilizes MYCN. Here we show that MYCN activates Aurora-A on chromatin, which phosphorylates histone H3 at serine 10 in the S phase, promotes the deposition of histone H3.3 and suppresses R-loop formation. Inhibition of Aurora-A induces transcription–replication conflicts and activates ataxia telangiectasia and Rad3-related (ATR) kinase, which limits double-strand break accumulation upon Aurora-A inhibition. Combined inhibition of Aurora-A and ATR kinases induces rampant tumor-specific apoptosis and tumor regression in mouse models of neuroblastoma, leading to permanent eradication in a subset of mice. The therapeutic efficacy is due to both tumor cell-intrinsic and immune cell-mediated mechanisms. We propose that targeting the ability of Aurora-A to resolve transcription–replication conflicts is an effective therapy for MYCN-driven neuroblastoma. Eilers and colleagues report that Aurora-A suppresses transcription–replication conflicts in MYCN-driven neuroblastoma, a vulnerability that can be targeted with a combination of Aurora-A and ATR kinase inhibitors.
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