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The rate of cell growth is governed by cell cycle stage.

机译:细胞生长速率受细胞周期阶段控制。

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摘要

Cell growth is an essential requirement for cell cycle progression. While it is often held that growth is independent of cell cycle position, this relationship has not been closely scrutinized. Here we show that in budding yeast, the ability of cells to grow changes during the cell cycle. We find that cell growth is faster in cells arrested in anaphase and G1 than in other cell cycle stages. We demonstrate that the establishment of a polarized actin cytoskeleton-either as a consequence of normal cell division or through activation of the mating pheromone response-potently attenuates protein synthesis and growth. We furthermore show by population and single-cell analysis that growth varies during an unperturbed cell cycle, slowing at the time of polarized growth. Our study uncovers a fundamental relationship whereby cell cycle position regulates growth.
机译:细胞生长是细胞周期进程的基本要求。尽管通常认为生长与细胞周期位置无关,但是尚未仔细研究这种关系。在这里,我们表明在发芽酵母中,细胞生长的能力在细胞周期中发生变化。我们发现,在后期和G1期被捕的细胞比其他细胞周期阶段的细胞生长更快。我们证明,由于正常细胞分裂或通过激活交配信息素反应而激活的极化肌动蛋白细胞骨架的建立有力地减弱了蛋白质的合成和生长。我们进一步通过群体和单细胞分析表明,在不受干扰的细胞周期中生长会发生变化,在极化生长时会变慢。我们的研究揭示了细胞周期位置调节生长的基本关系。

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