The replicon initiation burst released by reoxygenation of hypoxic T24 cells is accompanied by changes of MCM2 and Cdc7.

Leenus Martin
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引用次数: 2

Abstract

Although MCM2 is obviously important for the initiation of eukaryotic DNA replication, its role in O2 dependent regulation of replicon initiation is poorly understood. In this report, I analysed the changes of MCM2 during the transition from hypoxically suppressed replicon initiation to the burst of initiation triggered by reoxygenation in T24 cells. A high level of chromatin bound and nucleosolic MCM2 was found under the hypoxic replicon arrest. In contrast low cytosolic MCM2 was noticed. Recovery of O2 induced phosphorylation and diminution of chromatin bound MCM2, whereas cytosolic MCM2 increased. The level of chromatin bound Cdc7 did not change significantly upon reoxygenation. However, after reoxygenation, significant phosphorylation of Cdc7 and an increase of coimmunoprecipitation with its substrate (MCM2) were observed. This provides a hint that reoxygenation may promote the kinase activity of Cdc7. These changes might be the critical factors in O2 dependent regulation of replicon initiation. Moreover, phosphorylation of Cdc7 by Cdk2 can be observed in vitro, but seems to fail to regulate the level of chromatin bound Cdc7 as well as the changes of MCM2 in response to reoxygenation of hypoxically suppressed cells.

缺氧T24细胞再氧化释放的复制子起始爆发伴随着MCM2和Cdc7的改变。
虽然MCM2对真核生物DNA复制的启动显然很重要,但其在复制子启动的O2依赖性调控中的作用尚不清楚。在这篇报道中,我分析了T24细胞中MCM2从缺氧抑制复制子起始到再氧化触发的起始爆发的转变过程中的变化。在低氧复制子阻滞下发现了高水平的染色质结合和核质MCM2。相反,胞浆中MCM2含量较低。O2的恢复诱导染色质结合MCM2的磷酸化和减少,而细胞质MCM2增加。染色质结合Cdc7的水平在再氧化后没有明显变化。然而,再氧化后,Cdc7显著磷酸化,其底物(MCM2)的共免疫沉淀增加。这提示再氧化可能促进Cdc7的激酶活性。这些变化可能是O2依赖性复制子起始调控的关键因素。此外,在体外可以观察到Cdk2对Cdc7的磷酸化,但似乎不能调节染色质结合Cdc7的水平以及MCM2在缺氧抑制细胞再氧化时的变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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