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The CDK-APC/C Oscillator Predominantly Entrains Periodic Cell-CycleTranscription

机译:CDK-APC / C振荡器主要携带周期性细胞周期。转录

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摘要

Throughout cell cycle progression, the expression of multiple transcripts oscillate, and whether these are under the centralized control of the CDK-APC/C proteins or can be driven by a de-centralized transcription factor (TF) cascade is a fundamental question for understanding cell cycle regulation. In budding yeast, we find that the transcription of nearly all genes, as assessed by RNA-seq or fluorescence microscopy in single cells, is dictated by CDK-APC/C. Three exceptional genes are transcribed in a pulsatile pattern in a variety of CDK-APC/C arrests. Pursuing one of these transcripts, the SIC1 inhibitor of B-type cyclins, we use a combination of mathematical modeling and experimentation to provide evidence that, counter-intuitively, Sic1 provides a failsafe mechanism promoting nuclear division when levels of mitotic cyclins are low.
机译:在整个细胞周期进程中,多个转录物的表达会发生振荡,以及这些转录物是否处于CDK-APC / C蛋白的集中控制下或可由分散的转录因子(TF)级联驱动,这是理解细胞的基本问题循环调节。在发芽酵母中,我们发现几乎所有基因的转录都由CDK-APC / C决定,这是通过RNA-seq或荧光显微镜在单个细胞中评估的。在各种CDK-APC / C逮捕中,以搏动的方式转录了三个异常基因。遵循这些转录物之一,即B型细胞周期蛋白的SIC1抑制剂,我们使用数学建模和实验相结合的方法提供证据,与直觉相反,当有丝分裂细胞周期蛋白水平较低时,Sic1提供了促进核分裂的故障安全机制。

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