Istituto Nazionale di Genetica Molecolare (INGM) "Romeo and Enrica Invernizzi", Milan 20122, Italy.
King Abdullah University of Science and Technology (KAUST), Environmental Epigenetics Research Program, Biological and Environmental Sciences and Engineering Division, Thuwal 23955-6900, Saudi Arabia.
Bioessays. 2018 Apr;40(4):e1700137. doi: 10.1002/bies.201700137. Epub 2018 Mar 9.
Cells and tissues are continuously exposed to a changing microenvironment, hence the necessity of a flexible modulation of gene expression that in complex organism have been achieved through specialized chromatin mechanisms. Chromatin-based cell memory enables cells to maintain their identity by fixing lineage specific transcriptional programs, ensuring their faithful transmission through cell division; in particular PcG-based memory system evolved to maintain the silenced state of developmental and cell cycle genes. In evolution the complexity of this system have increased, particularly in vertebrates, indicating combinatorial and dynamic properties of Polycomb proteins, in some cases even overflowing outside the cell nucleus. Therefore, their function may not be limited to the imposition of rigid states of genetic programs, but on the ability to recognize signals and allow plastic transcriptional changes in response to different stimuli. Here, we discuss the most novel PcG mediated memory functions in facing and responding to the challenges posed by a fluctuating environment.
细胞和组织不断暴露于不断变化的微环境中,因此需要灵活地调节基因表达,在复杂的生物体中,这是通过专门的染色质机制实现的。基于染色质的细胞记忆使细胞能够通过固定谱系特异性转录程序来维持其身份,确保它们在细胞分裂过程中的忠实传递;特别是基于 PcG 的记忆系统进化为维持发育和细胞周期基因的沉默状态。在进化过程中,这个系统的复杂性增加了,特别是在脊椎动物中,表明 Polycomb 蛋白具有组合和动态特性,在某些情况下甚至溢出细胞核。因此,它们的功能可能不仅限于施加严格的遗传程序状态,还在于识别信号并允许对不同刺激做出灵活的转录变化的能力。在这里,我们讨论了 PcG 介导的记忆功能在应对不断变化的环境所带来的挑战方面的最新进展。