Institute of Plant Biochemistry and Photosynthesis (IBVF-CSIC-US), Avenida Américo Vespucio 49, 41092 Seville, Spain.
Plant Commun. 2021 Nov 26;3(1):100267. doi: 10.1016/j.xplc.2021.100267. eCollection 2022 Jan 10.
The evolutionary conserved Polycomb Group (PcG) repressive system comprises two central protein complexes, PcG repressive complex 1 (PRC1) and PRC2. These complexes, through the incorporation of histone modifications on chromatin, have an essential role in the normal development of eukaryotes. In recent years, a significant effort has been made to characterize these complexes in the different kingdoms, and despite there being remarkable functional and mechanistic conservation, some key molecular principles have diverged. In this review, we discuss current views on the function of plant PcG complexes. We compare the composition of PcG complexes between animals and plants, highlight the role of recently identified plant PcG accessory proteins, and discuss newly revealed roles of known PcG partners. We also examine the mechanisms by which the repression is achieved and how these complexes are recruited to target genes. Finally, we consider the possible role of some plant PcG proteins in mediating local and long-range chromatin interactions and, thus, shaping chromatin 3D architecture.
进化保守的 Polycomb 组 (PcG) 抑制系统包含两个核心蛋白复合物,PcG 抑制复合物 1 (PRC1) 和 PRC2。这些复合物通过在染色质上整合组蛋白修饰,在真核生物的正常发育中发挥着重要作用。近年来,人们在不同的生物领域中对这些复合物进行了大量的研究,尽管它们在功能和机制上有显著的保守性,但一些关键的分子原理已经出现分歧。在这篇综述中,我们讨论了目前对植物 PcG 复合物功能的看法。我们比较了动物和植物中 PcG 复合物的组成,强调了最近发现的植物 PcG 辅助蛋白的作用,并讨论了已知 PcG 伙伴的新发现的作用。我们还研究了抑制作用是如何实现的,以及这些复合物是如何被招募到靶基因上的。最后,我们考虑了一些植物 PcG 蛋白在介导局部和长距离染色质相互作用,从而塑造染色质 3D 结构方面的可能作用。