首页> 外文期刊>Journal of Cell Science >A NITROGEN STARVATION-INDUCED DORMANT G(0) STATE IN FISSION YEAST - THE ESTABLISHMENT FROM UNCOMMITTED G(1) STATE AND ITS DELAY FOR RETURN TO PROLIFERATION
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A NITROGEN STARVATION-INDUCED DORMANT G(0) STATE IN FISSION YEAST - THE ESTABLISHMENT FROM UNCOMMITTED G(1) STATE AND ITS DELAY FOR RETURN TO PROLIFERATION

机译:裂变酵母中由氮饥饿引起的休眠G(0)状态-从未承诺G(1)状态建立并延后至增殖

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摘要

Fission yeast cells either remain in the mitotic cell cycle or exit to meiotic sporulation from an uncommitted G(1) state dependent on the presence or absence of nitrogen source in the medium (Nurse and Bissett, 1981). We examined how heterothallic haploid cells, which cannot sporulate, behave under nitrogen-starvation for longer than 25 days at 26 degrees C. These cells were shown to enter a stable state (designated the dormant G(0)) with nearly full viability. Maintaining the dormant cells required glucose, suggesting that the cells remained metabolically active although cell division had ceased. They differed dramatically from mitotic and uncommitted G(1) cells in heat resistance, and also in cytoplasmic and nuclear morphologies. After nitrogen replenishment, the initial responses of dormant G(0) cells were investigated. The kinetics for reentry into the proliferative state were delayed considerably, and the changes in cell shape were enhanced particularly for those recovering from extended nitrogen starvation. A part of the delay could be accounted for by the duration of nuclear decondensation and cell elongation for the first cell division. [References: 50]
机译:裂变酵母细胞要么停留在有丝分裂细胞周期中,要么从未定型的G(1)状态退出减数分裂孢子形成,这取决于培养基中是否存在氮源(Nurse和Bissett,1981年)。我们检查了不能形成孢子的异硫单倍体细胞在26摄氏度下在氮饥饿下持续超过25天的行为。这些细胞显示进入稳定状态(指定为休眠G(0)),几乎具有完整的生存能力。维持休眠细胞需要葡萄糖,这表明尽管细胞分裂已经停止,但细胞仍保持代谢活性。它们在耐热性以及细胞质和核形态方面与有丝分裂和未定型的G(1)细胞有显着差异。氮补给后,休眠的G(0)细胞的初始响应进行了调查。再进入增生状态的动力学被大大延迟,并且细胞形状的变化得到增强,特别是对于那些因长期缺氮而恢复的细胞。延迟的一部分可以由第一次细胞分裂的核解聚和细胞延长的持续时间来解释。 [参考:50]

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