College of Life Sciences, Beijing Normal University, Beijing, China; National Institute of Biological Sciences, Beijing, China.
National Institute of Biological Sciences, Beijing, China.
Mol Plant. 2023 Nov 6;16(11):1847-1865. doi: 10.1016/j.molp.2023.10.006. Epub 2023 Oct 10.
Histone H2A monoubiquitination is associated with transcriptional repression and needs to be removed by deubiquitinases to facilitate gene transcription in eukaryotes. However, the deubiquitinase responsible for genome-wide H2A deubiquitination in plants has yet to be identified. In this study, we found that the previously identified PWWP-EPCR-ARID-TRB (PEAT) complex components interact with both the ubiquitin-specific protease UBP5 and the redundant histone acetyltransferases HAM1 and HAM2 (HAM1/2) to form a larger version of PEAT complex in Arabidopsis thaliana. UBP5 functions as an H2A deubiquitinase in a nucleosome substrate-dependent manner in vitro and mediates H2A deubiquitination at the whole-genome level in vivo. HAM1/2 are shared subunits of the PEAT complex and the conserved NuA4 histone acetyltransferase complex, and are responsible for histone H4K5 acetylation. Within the PEAT complex, the PWWP components (PWWP1, PWWP2, and PWWP3) directly interact with UBP5 and are necessary for UBP5-mediated H2A deubiquitination, while the EPCR components (EPCR1 and EPCR2) directly interact with HAM1/2 and are required for HAM1/2-mediated H4K5 acetylation. Collectively, our study not only identifies dual roles of the PEAT complex in H2A deubiquitination and H4K5 acetylation but also illustrates how these processes collaborate at the whole-genome level to regulate the transcription and development in plants.
组蛋白 H2A 单泛素化与转录抑制有关,需要通过去泛素化酶将其去除,以促进真核生物中的基因转录。然而,负责植物全基因组 H2A 去泛素化的去泛素化酶尚未被鉴定。在本研究中,我们发现先前鉴定的 PWWP-EPCR-ARID-TRB(PEAT)复合物成分与泛素特异性蛋白酶 UBP5 和冗余组蛋白乙酰转移酶 HAM1 和 HAM2(HAM1/2)相互作用,在拟南芥中形成更大版本的 PEAT 复合物。UBP5 在体外以核小体底物依赖的方式作为 H2A 去泛素化酶发挥作用,并在体内介导全基因组水平的 H2A 去泛素化。HAM1/2 是 PEAT 复合物和保守的 NuA4 组蛋白乙酰转移酶复合物的共享亚基,负责组蛋白 H4K5 乙酰化。在 PEAT 复合物中,PWWP 成分(PWWP1、PWWP2 和 PWWP3)直接与 UBP5 相互作用,是 UBP5 介导的 H2A 去泛素化所必需的,而 EPCR 成分(EPCR1 和 EPCR2)直接与 HAM1/2 相互作用,是 HAM1/2 介导的 H4K5 乙酰化所必需的。总之,我们的研究不仅确定了 PEAT 复合物在 H2A 去泛素化和 H4K5 乙酰化中的双重作用,还说明了这些过程如何在全基因组水平上协同调节植物的转录和发育。