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Diverse system stresses: common mechanisms of chromosome fragmentation

机译:多样化的系统压力:染色体片段化的常见机制

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Chromosome fragmentation (C-Frag) is a newly identified MCD (mitotic cell death), distinct from apoptosis and MC (mitotic catastrophe). As different molecular mechanisms can induce C-Frag, we hypothesize that the general mechanism of its induction is a system response to cellular stress. A clear link between C-Frag and diverse system stresses generated from an array of molecular mechanisms is shown. Centrosome amplification, which is also linked to diverse mechanisms of stress, is shown to occur in association with C-Frag. This led to a new model showing that diverse stresses induce common, MCD. Specifically, different cellular stresses target the integral chromosomal machinery, leading to system instability and triggering of MCD by C-Frag. This model of stress-induced cell death is also applicable to other types of cell death. The current study solves the previously confusing relationship between the diverse molecular mechanisms of chromosome pulverization, suggesting that incomplete C-Frag could serve as the initial event responsible for forms of genome chaos including chromothripsis. In addition, multiple cell death types are shown to coexist with C-Frag and it is more dominant than apoptosis at lower drug concentrations. Together, this study suggests that cell death is a diverse group of highly heterogeneous events that are linked to stress-induced system instability and evolutionary potential.. ? 2011 Macmillan Publishers Limited
机译:染色体片段化(C-Frag)是一种新发现的MCD(有丝分裂细胞死亡),不同于凋亡和MC(有丝分裂灾难)。由于不同的分子机制可以诱导C-Frag,我们假设其诱导的一般机制是系统对细胞应激的反应。显示了C-Frag与由一系列分子机制产生的各种系统应力之间的明确联系。中心体扩增也与多种应激机制相关,已显示与C-Frag结合发生。这导致了一个新模型的出现,该模型表明多种压力会诱发常见的MCD。具体而言,不同的细胞应力作用于整体染色体机制,从而导致系统不稳定和C-Frag触发MCD。这种应激诱导的细胞死亡模型也适用于其他类型的细胞死亡。当前的研究解决了染色体粉碎的各种分子机制之间的先前令人困惑的关系,这表明不完整的C-Frag可能是导致基因组混乱形式(包括染色癣)的初始事件。此外,多种细胞死亡类型显示与C-Frag共存,并且在较低药物浓度下比细胞凋亡更重要。总之,这项研究表明细胞死亡是一组高度异质的事件,这些事件与应激诱导的系统不稳定和进化潜能有关。 2011 Macmillan Publishers Limited

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