Institute for Biochemistry and Biology, University of Potsdam, Potsdam, Germany.
Methods Mol Biol. 2024;2842:193-207. doi: 10.1007/978-1-0716-4051-7_10.
Epigenetic editing enables the locus-specific manipulation of chromatin modifications. It allows the functional analysis of interactions between chromatin modifications and epigenetically stable gene expression states, thus establishing causal relationships, where previously correlations were suspected. Here, we describe the procedures for gene-specific epigenetic editing in plants that are based on targeting a histone modifier using an inactive dCas9 fusion protein that is recruited by a set of three distinct single guide RNAs (sgRNAs) that all target a region within the promoter of the target gene. We outline design principles and emphasize the need for suitable control constructs. In summary, the protocol will be widely useful for plant scientists looking to manipulate chromatin modifications in a locus-specific manner.
表观遗传编辑使我们能够对染色质修饰进行特定位置的操作。它允许对染色质修饰和表观遗传稳定的基因表达状态之间的相互作用进行功能分析,从而建立因果关系,而在此之前,人们只能怀疑存在这种关系。在这里,我们描述了基于使用一种无活性的 dCas9 融合蛋白靶向组蛋白修饰物的植物中基因特异性表观遗传编辑的程序,该融合蛋白通过一组三个不同的单指导 RNA(sgRNA)募集,所有 sgRNA 都靶向靶基因启动子内的一个区域。我们概述了设计原则,并强调了合适对照构建体的必要性。总之,该方案将广泛用于希望以特定位置方式操纵染色质修饰的植物科学家。