National Institute of Biological Sciences, Beijing 102206, China.
Institute of Plant and Food Science, Department of Biology, Southern University of Science and Technology, Shenzhen, Guangdong 518055, China.
Plant Cell. 2020 Jul;32(7):2178-2195. doi: 10.1105/tpc.19.00944. Epub 2020 Apr 30.
Chromatin remodeling and histone modifications are important for development and floral transition in plants. However, it is largely unknown whether and how these two epigenetic regulators coordinately regulate the important biological processes. Here, we identified three types of Imitation Switch (ISWI) chromatin-remodeling complexes in Arabidopsis (). We found that AT-RICH INTERACTING DOMAIN5 (ARID5), a subunit of a plant-specific ISWI complex, can regulate development and floral transition. The ARID-PHD dual domain cassette of ARID5 recognizes both the H3K4me3 histone mark and AT-rich DNA. We determined the ternary complex structure of the ARID5 ARID-PHD cassette with an H3K4me3 peptide and an AT-containing DNA. The H3K4me3 peptide is combinatorially recognized by the PHD and ARID domains, while the DNA is specifically recognized by the ARID domain. Both PHD and ARID domains are necessary for the association of ARID5 with chromatin. The results suggest that the dual recognition of AT-rich DNA and H3K4me3 by the ARID5 ARID-PHD cassette may facilitate the association of the ISWI complex with specific chromatin regions to regulate development and floral transition.
染色质重塑和组蛋白修饰对于植物的发育和花发育至关重要。然而,这些两种表观遗传调控因子是否以及如何协调调节重要的生物学过程还知之甚少。在这里,我们在拟南芥中鉴定了三种类型的 Imprinting Switch(ISWI)染色质重塑复合物。我们发现,ARID5,一种植物特异性 ISWI 复合物的亚基,可调节发育和花发育。ARID5 的 ARID-PHD 双结构域盒识别 H3K4me3 组蛋白标记和富含 AT 的 DNA。我们确定了 ARID5 ARID-PHD 盒与 H3K4me3 肽和含 AT 的 DNA 的三元复合物结构。H3K4me3 肽通过 PHD 和 ARID 结构域组合识别,而 DNA 则由 ARID 结构域特异性识别。PHD 和 ARID 结构域对于 ARID5 与染色质的结合都是必需的。结果表明,ARID5 ARID-PHD 盒对富含 AT 的 DNA 和 H3K4me3 的双重识别可能有助于 ISWI 复合物与特定染色质区域的结合,从而调节发育和花发育。