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Bridges between Cell Cycle Regulation and Self-Renewal Maintenance

机译:细胞周期调节与自我更新维护之间的桥梁

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摘要

Stem cells are a unique population that lies at the summit of any, or at least most, biological systems. They can differentiate in a variety of mature cell types, but they also have the ability to self-renew, that is, the capacity to divide and retain all the features of the mother cell. The regulation of self-renewal has been studied for many years, but several aspects of this regulation are still vague. The combined decision to divide and self-renew or differentiate suggests that the mechanisms that regulate self-renewal and cell cycle activity are intermingled. While inactivation of many cell cycle regulators impacts the physiological and pathological biology of stem cells, the exact mechanisms that link the decision to enter the cell cycle and the choice of the cellular fate are poorly understood. The multiplicity of signals and pathways regulating self-renewal add to the complexity of the phenomenon. Here, I will review the described links between the cell cycle and self-renewal and discuss the role of the niche in the regulation of both mechanisms.
机译:干细胞是一个独特的种群,位于任何或至少大多数生物系统的顶峰。它们可以在多种成熟细胞类型中分化,但它们也具有自我更新的能力,即分裂和保留母细胞所有特征的能力。关于自我更新的规定已经研究了很多年,但是该规定的几个方面仍然含糊不清。分裂,自我更新或分化的综合决定表明,调节自我更新和细胞周期活动的机制是混杂的。虽然许多细胞周期调节因子的失活会影响干细胞的生理和病理生物学,但将决定进入细胞周期和选择细胞命运的确切机制联系在一起的了解却很少。调节自我更新的信号和途径的多样性增加了现象的复杂性。在这里,我将回顾所描述的细胞周期与自我更新之间的联系,并讨论利基在两种机制的调节中的作用。

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