首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Promyelocytic leukemia nuclear bodies behave as DNA damage sensors whose response to DNA double-strand breaks is regulated by NBS1 and the kinases ATM Chk2 and ATR
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Promyelocytic leukemia nuclear bodies behave as DNA damage sensors whose response to DNA double-strand breaks is regulated by NBS1 and the kinases ATM Chk2 and ATR

机译:早幼粒细胞白血病核体充当DNA损伤传感器其对DNA双链断裂的反应受NBS1和激酶ATMChk2和ATR调节

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摘要

The promyelocytic leukemia (PML) nuclear body (NB) is a dynamic subnuclear compartment that is implicated in tumor suppression, as well as in the transcription, replication, and repair of DNA. PML NB number can change during the cell cycle, increasing in S phase and in response to cellular stress, including DNA damage. Although topological changes in chromatin after DNA damage may affect the integrity of PML NBs, the molecular or structural basis for an increase in PML NB number has not been elucidated. We demonstrate that after DNA double-strand break induction, the increase in PML NB number is based on a biophysical process, as well as ongoing cell cycle progression and DNA repair. PML NBs increase in number by a supramolecular fission mechanism similar to that observed in S-phase cells, and which is delayed or inhibited by the loss of function of NBS1, ATM, Chk2, and ATR kinase. Therefore, an increase in PML NB number is an intrinsic element of the cellular response to DNA damage.
机译:早幼粒细胞白血病(PML)核体(NB)是一个动态的核亚区室,与肿瘤抑制以及DNA的转录,复制和修复有关。 PML NB数量可以在细胞周期中改变,在S期增加,并响应细胞应激(包括DNA损伤)而增加。尽管DNA损伤后染色质的拓扑变化可能会影响PML NB的完整性,但尚未阐明PML NB数量增加的分子或结构基础。我们证明,DNA双链断裂诱导后,PML NB数量的增加是基于生物物理过程,以及正在进行的细胞周期进程和DNA修复。 PML NBs的数量通过类似于S期细胞中观察到的超分子裂变机制而增加,并且由于NBS1,ATM,Chk2和ATR激酶功能的丧失而延迟或抑制。因此,PML NB数量的增加是细胞对DNA损伤的反应的内在因素。

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