Department of Experimental Oncology, European Institute of Oncology, IFOM-IEO Campus, Milan, Italy.
Bioessays. 2011 Jul;33(7):519-28. doi: 10.1002/bies.201100021. Epub 2011 Jun 1.
The study of mammalian corticogenesis has revealed a critical role for Polycomb group (PcG) factors in timing the execution of developmental choices. Meanwhile, the study of post-translational modifications of PcG factors marks a symmetrical point, namely that the activity of PcG proteins is itself timed in a manner that links progression through the cell cycle to targeting of downstream genes. Finally, in a third symmetrical twist, the studies that dissect the timing of neural fate by Polycomb are also uncovering the importance of timing in the experimental mutation, since ablation of the same PcG member at different developmental stages yields dramatically different results. Here, I weave together these three lines of evidence and develop a unifying model that clarifies the dynamics of Polycomb function in neural development and defines the salient challenges ahead.
哺乳动物皮质发生的研究揭示了多梳组(PcG)因子在时间上执行发育选择的关键作用。与此同时,PcG 因子的翻译后修饰研究标志着一个对称点,即 PcG 蛋白的活性本身是定时的,这种定时方式将细胞周期的进展与下游基因的靶向联系起来。最后,在第三个对称的转折中,通过 Polycomb 剖析神经命运的时间的研究也揭示了时间在实验突变中的重要性,因为在不同的发育阶段消融相同的 PcG 成员会产生截然不同的结果。在这里,我将这三条证据线索编织在一起,提出了一个统一的模型,阐明了 Polycomb 功能在神经发育中的动态,并定义了未来的突出挑战。