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Myc-driven chromatin accessibility regulates Cdc45 assembly into CMG helicases

机译:Myc驱动的染色质可及性调节Cdc45组装成CMG解旋酶

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摘要

Myc-driven tumorigenesis involves a non-transcriptional role for Myc in over-activating replication origins. We show here that the mechanism underlying this process involves a direct role for Myc in activation of Cdc45-MCM-GINS (CMG) helicases at Myc-targeted sites. Myc induces decondensation of higher-order chromatin at targeted sites and is required for chromatin access at a chromosomal origin. Myc-driven chromatin accessibility promotes Cdc45/GINS recruitment to resident MCMs, and activation of CMGs. Myc-Box II, which is necessary for Myc-driven transformation, is required for Myc-induced chromatin accessibility, Cdc45/GINS recruitment, and replication stimulation. Myc interactors GCN5, Tip60, and TRRAP are essential for chromatin unfolding and recruitment of Cdc45, and co-expression of GCN5 or Tip60 with MBII-deficient Myc rescues these events and promotes CMG activation. Finally, Myc and Cdc45 interact and physiologic conditions for CMG assembly require the functions of Myc, MBII, and GCN5 for Cdc45 recruitment and initiation of DNA replication.
机译:Myc驱动的肿瘤发生涉及Myc在过度激活复制起点中的非转录作用。我们在这里显示,此过程的基础机制涉及Myc在Myc靶向位点的Cdc45-MCM-GINS(CMG)解旋酶激活中的直接作用。 Myc在目标位点诱导高阶染色质的缩聚反应,是从染色体起源进入染色质所必需的。 Myc驱动的染色质可及性促进了Cdc45 / GINS招募至常驻MCM,并激活了CMG。 Myc诱导的染色质可及性,Cdc45 / GINS募集和复制刺激是Myc驱动的转化所必需的Myc-Box II。 Myc相互作用子GCN5,Tip60和TRRAP对于染色质展开和Cdc45募集至关重要,GCN5或Tip60与MBII缺陷型Myc的共表达可挽救这些事件并促进CMG激活。最后,Myc和Cdc45相互作用且CMG组​​装的生理条件需要Myc,MBII和GCN5的功能才能招募Cdc45和启动DNA复制。

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