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Fission Yeast Does Not Age under Favorable Conditions, but Does So after Stress

机译:裂变酵母不会在有利的条件下老化,但在压力作用下会老化

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摘要

BackgroundMany unicellular organisms age: as time passes, they divide more slowly and ultimately die. In budding yeast, asymmetric segregation of cellular damage results in aging mother cells and rejuvenated daughters. We hypothesize that the organisms in which this asymmetry is lacking, or can be modulated, may not undergo aging.ResultsWe performed a complete pedigree analysis of microcolonies of the fission yeast Schizosaccharomyces pombe growing from a single cell. When cells were grown under favorable conditions, none of the lineages exhibited aging, which is defined as a consecutive increase in division time and increased death probability. Under favorable conditions, few cells died, and their death was random and sudden rather than following a gradual increase in division time. Cell death correlated with the inheritance of Hsp104-associated protein aggregates. After stress, the cells that inherited large aggregates aged, showing a consecutive increase in division time and an increased death probability. Their sisters, who inherited little or no aggregates, did not age.ConclusionsWe conclude that S. pombe does not age under favorable growth conditions, but does so under stress. This transition appears to be passive rather than active and results from the formation of a single large aggregate, which segregates asymmetrically at the subsequent cell division. We argue that this damage-induced asymmetric segregation has evolved to sacrifice some cells so that others may survive unscathed after severe environmental stresses.
机译:背景许多单细胞生物衰老:随着时间的流逝,它们分裂的速度变慢,最终死亡。在出芽的酵母中,细胞损伤的不对称分离导致母细胞老化和子代复兴。我们假设缺乏这种不对称性或可以调节这种不对称性的生物可能不会老化。结果我们对裂殖酵母粟酒裂殖酵母单细胞生长的微菌落进行了完整的谱系分析。当细胞在有利条件下生长时,所有谱系都没有表现出衰老,这被定义为分裂时间的连续增加和死亡概率的增加。在有利的条件下,几乎没有细胞死亡,并且其死亡是随机和突然的,而不是随着分裂时间的逐渐增加。细胞死亡与Hsp104相关蛋白聚集体的遗传相关。压力后,继承大聚集体的细胞老化,显示分裂时间连续增加,死亡概率增加。他们的姐妹,几乎没有遗传或没有遗传,没有老化。结论我们得出结论,粟酒裂殖酵母并不是在有利的生长条件下老化,而是在压力下老化。这种转变似乎是被动的而不是主动的,并且是由单个大聚集体的形成导致的,该聚集体在随后的细胞分裂中不对称地分离。我们认为,这种损伤引起的不对称分离已经演化成牺牲了一些细胞,因此其他细胞在严重的环境压力下可以毫发无损地存活下来。

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