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Τρίτη 9 Φεβρουαρίου 2016

Formula G1: Cell cycle in the driver's seat of stem cell fate determination

Cell cycle dynamics has emerged as a key regulator of stem cell fate decisions. In particular, differentiation decisions are associated with the G1 phase, and recent evidence suggests that self-renewal is actively regulated outside of G1. The mechanisms underlying these phenomena are largely unknown, but direct control of gene regulatory programs by the cell cycle machinery is heavily implicated. A recent study sheds important mechanistic insight by demonstrating that in human embryonic stem cells (hESCs) the Cyclin-dependent kinase CDK2 controls a wide-spread epigenetic program that drives transcription at differentiation-related gene promoters specifically in G1. Here, we discuss this finding and explore whether similar mechanisms are likely to function in multipotent stem cells. The implications of this discovery toward our understanding of stem cell-related disease are discussed, and we postulate novel mechanisms that position the cell cycle as a regulator of cell fate gene networks at epigenetic, transcriptional and post-transcriptional levels.

Thumbnail image of graphical abstract

CDK-dependent mechanisms promote stem cell differentiation specifically in G1 phase by regulating transcription of differentiation-associated genes. This is via recruitment of transcription factors (TF) and chromatin modifying factors (CMF) to gene promoters. Maintenance of a self-renewing state may be similarly controlled in other cell cycle phases, such as S phase.



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