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首页> 外文期刊>Current Biology: CB >Uncoupling of S phase and mitosis in cardiomyocytes and hepatocyteslacking the winged-helix transcription factor Trident
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Uncoupling of S phase and mitosis in cardiomyocytes and hepatocyteslacking the winged-helix transcription factor Trident

机译:缺少翼状螺旋转录因子三叉戟的心肌细胞和肝细胞中S期与有丝分裂的解偶联

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摘要

In order to maintain a stable karyotype, the eukaryotic cell cycle is coordinated such that only one round of S phase precedes each mitosis, and mitosis is not initiated until DNA replication is completed. Several checkpoints and regulatory proteins have been defined in lower eukaryotes that govern this coordination, but little is known about the proteins that are involved in mammalian cells. Previously, we have shown that the winged-helix transcription factor Trident - also known as HFH-11, FKL16 and WIN [1-3] - is exclusively expressed in cycling cells and is phosphorylated during mitosis [1,4]. The cellular function of Trident has yet to be described, however, Here, we have shown that disruption of the Trident gene in mice resulted in postnatal death, most probably because of circulatory failure. Histological analysis of Trident(-/-) embryos from embryonic day 10 (E10) onwards revealed a specific, characteristic defect in the developing myocardium, The orientation of the myocytes was highly irregular and the nuclei of these disorganized cardiomyocytes were clearly polyploid with up to a 50-fold increase in DNA content. Polyploidy was also observed in embryonic hepatocytes. Our results indicate that expression of Trident is required to prevent multiple rounds of S phase in the heart and the liver. Trident therefore appears to have a role in preventing DNA re-replication during the G2 and M phases.
机译:为了维持稳定的核型,将真核细胞周期进行协调,使得每次有丝分裂之前只有一轮S期,并且直到DNA复制完成才开始有丝分裂。在控制这种协调作用的低等真核生物中已经定义了几个检查点和调节蛋白,但是对哺乳动物细胞中涉及的蛋白知之甚少。以前,我们已经表明,有翼螺旋转录因子Trident(也称为HFH-11,FKL16和WIN [1-3])仅在循环细胞中表达,并在有丝分裂期间被磷酸化[1,4]。 Trident的细胞功能尚未被描述,但是,在这里,我们已经证明Trident基因在小鼠中的破坏会导致出生后死亡,这很可能是因为循环衰竭。从胚胎第10天(E10)开始对Trident(-/-)胚胎的组织学分析显示,发育中的心肌存在特定的特征缺陷。 DNA含量增加了50倍。在胚胎肝细胞中也观察到多倍体。我们的结果表明,Trident的表达是防止心脏和肝脏中多轮S期所必需的。因此,Trident似乎在防止G2和M阶段的DNA复制中具有作用。

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