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首页> 外文期刊>Molecular biology of the cell >Suspended Animation Extends Survival Limits of Caenorhabditis elegans and Saccharomyces cerevisiae at Low Temperature
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Suspended Animation Extends Survival Limits of Caenorhabditis elegans and Saccharomyces cerevisiae at Low Temperature

机译:悬浮动画延长了秀丽隐杆线虫和酿酒酵母在低温下的生存极限

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摘要

The orderly progression through the cell division cycle is of paramount importance to all organisms, as improper progression through the cycle could result in defects with grave consequences. Previously, our lab has shown that model eukaryotes such as Saccharomyces cerevisiae , Caenorhabditis elegans , and Danio rerio all retain high viability after prolonged arrest in a state of anoxia-induced suspended animation, implying that in such a state, progression through the cell division cycle is reversibly arrested in an orderly manner. Here, we show that S. cerevisiae (both wild-type and several cold-sensitive strains) and C. elegans embryos exhibit a dramatic decrease in viability that is associated with dysregulation of the cell cycle when exposed to low temperatures. Further, we find that when the yeast or worms are first transitioned into a state of anoxia-induced suspended animation before cold exposure, the associated cold-induced viability defects are largely abrogated. We present evidence that by imposing an anoxia-induced reversible arrest of the cell cycle, the cells are prevented from engaging in aberrant cell cycle events in the cold, thus allowing the organisms to avoid the lethality that would have occurred in a cold, oxygenated environment.
机译:通过细胞分裂循环的有序进展对于所有生物都是至关重要的,因为通过循环的不正确进展可能会导致缺陷并带来严重后果。以前,我们的实验室已经证明,在厌氧诱导的悬浮动画状态下长时间停滞后,模型酿酒酵母,秀丽隐杆线虫和线粒体真核生物都保留了较高的生存能力,这表明在这种状态下,整个细胞分裂周期都在进行被有序地可逆地逮捕。在这里,我们显示酿酒酵母(野生型和几种冷敏感菌株)和秀丽隐杆线虫胚胎暴露于低温时,其活力显着下降,这与细胞周期失调有关。此外,我们发现,当酵母或蠕虫在冷暴露之前首先转变为缺氧诱导的悬浮动画状态时,相关的冷诱导的生存力缺陷就被消除了。我们提供的证据表明,通过施加缺氧诱导的细胞周期可逆性停滞,可以防止细胞在寒冷时参与异常的细胞周期事件,从而使生物体避免在寒冷,充氧的环境中发生致命性。

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