Institute of Epigenetics and Stem Cells (IES), Helmholtz Zentrum München, München, Germany.
Faculty of Biology, Ludwig-Maximilians Universität, München, Germany.
EMBO Rep. 2019 Dec 5;20(12):e47952. doi: 10.15252/embr.201947952. Epub 2019 Nov 7.
In most eukaryotes, constitutive heterochromatin is associated with H3K9me3 and HP1α. The latter has been shown to play a role in heterochromatin formation through liquid-liquid phase separation. However, many other proteins are known to regulate and/or interact with constitutive heterochromatic regions in several species. We postulate that some of these heterochromatic proteins may play a role in the regulation of heterochromatin formation by liquid-liquid phase separation. Indeed, an analysis of the constitutive heterochromatin proteome shows that proteins associated with constitutive heterochromatin are significantly more disordered than a random set or a full nucleome set of proteins. Interestingly, their expression begins low and increases during preimplantation development. These observations suggest that the preimplantation embryo is a useful model to address the potential role for phase separation in heterochromatin formation, anticipating exciting research in the years to come.
在大多数真核生物中,组成型异染色质与 H3K9me3 和 HP1α 相关。后者已被证明通过液-液相分离在异染色质形成中发挥作用。然而,许多其他蛋白质被认为在几个物种的组成型异染色质区域的调节和/或相互作用中发挥作用。我们假设这些异染色质蛋白中的一些可能在液-液相分离调节异染色质形成中发挥作用。事实上,对组成型异染色质蛋白质组的分析表明,与组成型异染色质相关的蛋白质比随机集或完整核组蛋白集的蛋白质显著更无序。有趣的是,它们的表达水平在植入前发育过程中较低,随后逐渐增加。这些观察结果表明,植入前胚胎是解决液-液相分离在异染色质形成中潜在作用的有用模型,预示着未来几年令人兴奋的研究。