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The proliferation-quiescence decision is controlled by a bifurcation in CDK2 activity at mitotic exit

机译:增殖静止决定受有丝分裂出口处CDK2活性分叉控制

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摘要

Tissue homeostasis in metazoans is regulated by transitions of cells between quiescence and proliferation. The hallmark of proliferating populations is progression through the cell cycle, which is driven by cyclin-dependent kinase (CDK) activity. Here, we introduce a live-cell sensor for CDK2 activity and unexpectedly found that proliferating cells bifurcate into two populations as they exit mitosis. Many cells immediately commit to the next cell cycle by building up CDK2 activity from an intermediate level, while other cells lack CDK2 activity and enter a transient state of quiescence. This bifurcation is directly controlled by the CDK inhibitor p21 and is regulated by mitogens during a restriction window at the end of the previous cell cycle. Thus, cells decide at the end of mitosis to either start the next cell cycle by immediately building up CDK2 activity or to enter a transient G0-like state by suppressing CDK2 activity.
机译:后生动物中的组织稳态由细胞在静止和增殖之间的过渡调节。人口激增的标志是整个细胞周期的进展,这是由细胞周期蛋白依赖性激酶(CDK)活性驱动的。在这里,我们介绍了一种用于CDK2活性的活细胞传感器,出乎意料地发现,增殖细胞在退出有丝分裂时会分成两个种群。许多细胞通过从中间水平建立CDK2活性而立即进入下一细胞周期,而其他细胞则缺乏CDK2活性并进入静止的瞬时状态。该分支由CDK抑制剂p21直接控制,并在前一个细胞周期结束时的限制性窗口内由有丝分裂剂调控。因此,细胞在有丝分裂结束时决定是通过立即建立CDK2活性来开始下一个细胞周期,还是通过抑制CDK2活性而进入瞬时G0样状态。

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