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首页> 外文期刊>Molecular biology of the cell >Hsp90 induces increased genomic instability toward DNA-damaging agents by tuning down RAD53 transcription
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Hsp90 induces increased genomic instability toward DNA-damaging agents by tuning down RAD53 transcription

机译:Hsp90通过调低RAD53转录诱导针对DN​​A损伤剂的基因组不稳定性增加

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摘要

It is well documented that elevated body temperature causes tumors to regress upon radiotherapy. However, how hyperthermia induces DNA damage sensitivity is not clear. We show that a transient heat shock and particularly the concomitant induction of Hsp90 lead to increased genomic instability under DNA-damaging conditions. Using Saccharomyces cerevisiae as a model eukaryote, we demonstrate that elevated levels of Hsp90 attenuate efficient DNA damage signaling and dictate preferential use of the potentially mutagenic double-strand break repair pathway. We show that under normal physiological conditions, Hsp90 negatively regulates RAD53 transcription to suppress DNA damage checkpoint activation. However, under DNA damaging conditions, RAD53 is derepressed, and the increased level of Rad53p triggers an efficient DNA damage response. A higher abundance of Hsp90 causes increased transcriptional repression on RAD53 in a dose-dependent manner, which could not be fully derepressed even in the presence of DNA damage. Accordingly, cells behave like a rad53 loss-of-function mutant and show reduced NHEJ efficiency, with a drastic failure to up-regulate RAD51 expression and manifestly faster accumulation of CLN1 and CLN2 in DNA-damaged G1, cells leading to premature release from checkpoint arrest. We further demonstrate that Rad53 overexpression is able to rescue all of the aforementioned deleterious effects caused by Hsp90 overproduction.
机译:众所周知,体温升高会导致肿瘤在放疗后消退。然而,热疗如何引起DNA损伤敏感性尚不清楚。我们表明,短暂的热休克,尤其是伴随而来的Hsp90诱导导致DNA破坏条件下的基因组不稳定增加。使用酿酒酵母作为模型的真核生物,我们证明了高水平的Hsp90减弱有效的DNA损伤信号传导,并指示潜在的诱变双链断裂修复途径的优先使用。我们表明,在正常的生理条件下,Hsp90负调控RAD53转录,以抑制DNA损伤检查点的激活。但是,在DNA破坏条件下,RAD53被抑制,而Rad53p的水平升高触发有效的DNA损伤反应。 Hsp90的较高丰度导致RAD53上的转录抑制作用呈剂量依赖性,即使存在DNA损伤也不能完全抑制。因此,细胞表现为rad53功能丧失的突变体,并显示出NHEJ效率降低,严重无法上调RAD51的表达,并且在DNA损伤的G1中明显加快了CLN1和CLN2的积累,从而导致细胞从检查点过早释放。逮捕。我们进一步证明,Rad53过表达能够挽救Hsp90过生产引起的所有上述有害作用。

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