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首页> 外文期刊>Molecular and Cellular Biology >The cell cycle-coupled expression of topoisomerase IIalpha during S phase is regulated by mRNA stability and is disrupted by heat shock or ionizing radiation.
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The cell cycle-coupled expression of topoisomerase IIalpha during S phase is regulated by mRNA stability and is disrupted by heat shock or ionizing radiation.

机译:拓扑异构酶IIalpha在S期的细胞周期偶联表达受mRNA稳定度调节,并受热激或电离辐射破坏。

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摘要

Topoisomerase II is a multifunctional protein required during DNA replication, chromosome disjunction at mitosis, and other DNA-related activities by virtue of its ability to alter DNA supercoiling. The enzyme is encoded by two similar but nonidentical genes: the topoisomerase IIalpha and IIbeta genes. In HeLa cells synchronized by mitotic shake-off, topoisomeraseII alpha mRNA levels were found to vary as a function of cell cycle position, being 15-fold higher in late S phase (14 to 18 h postmitosis) than during G1 phase. Also detected was a corresponding increase in topoisomerase IIalpha protein synthesis at 14 to 18 h postmitosis which resulted in significantly higher accumulation of the protein during S and G2 phases. Topoisomerase IIalpha expression was not dependent on DNA synthesis during S phase, which could be inhibited without effect on the timing or level of mRNA expression. Mechanistically, topoisomerase IIalpha expression appears to be coupled to cell cycle position mainly through associated changes in mRNA stability. When cells are in S phase and mRNA levels are maximal, the half-life of topoisomerase IIalpha mRNA was determined to be approximately 30 min. A similar decrease in mRNA stability was also induced by two external factors known to delay cell cycle progression. Treatment of S-phase cells, at the time of maximum topoisomerase IIalpha mRNA stability, with either ionizing radiation (5 Gy) or heat shock (45 degrees C for 15 min) caused the accumulated topoisomerase IIalpha mRNA to decay. This finding suggests a potential relationship between stress-induced decreases in topoisomerase IIalpha expression and cell cycle progression delays in late S/G2.
机译:拓扑异构酶II是一种多功能蛋白质,由于其具有改变DNA超螺旋的能力,因此在DNA复制,有丝分裂中的染色体分离以及其他与DNA有关的活动中都需要。该酶由两个相似但不相同的基因编码:拓扑异构酶IIalpha和IIbeta基因。在通过有丝分裂摆脱同步的HeLa细胞中,发现拓扑异构酶IIαmRNA水平随细胞周期位置而变化,在S期晚期(有丝分裂后14至18 h)比G1期高15倍。还检测到有丝分裂后14至18 h拓扑异构酶IIalpha蛋白质合成的相应增加,这导致S和G2阶段蛋白质的积累明显增加。拓扑异构酶IIalpha的表达不依赖于S期的DNA合成,这可以被抑制而不影响mRNA表达的时间或水平。从机制上讲,拓扑异构酶IIalpha的表达似乎主要通过mRNA稳定性的相关变化与细胞周期位置偶联。当细胞处于S期并且mRNA水平达到最大时,拓扑异构酶IIalpha mRNA的半衰期确定为大约30分钟。 mRNA稳定性的类似下降也被两个已知延迟细胞周期进程的外部因素诱导。在电离辐射(5 Gy)或热休克(45摄氏度,15分钟)下,在最大拓扑异构酶IIalpha mRNA稳定的情况下处理S期细胞会导致积累的拓扑异构酶IIalpha mRNA降解。这一发现表明应激诱导的拓扑异构酶IIalpha表达下降与晚期S / G2细胞周期进程延迟之间存在潜在的关系。

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