State Key Laboratory of Hybrid Rice, College of Life Sciences, Wuhan University, Wuhan, 430072, China.
Hubei Hongshan Laboratory, Wuhan, 430072, China.
New Phytol. 2022 Sep;235(6):2439-2453. doi: 10.1111/nph.18279. Epub 2022 Jun 29.
RPA2A is a subunit of the conserved heterotrimeric replication protein A (RPA) in Arabidopsis, which is an essential replisome component that binds to single-stranded DNA during DNA replication. RPA2A controls a set of developmental processes, but the underlying mechanism is largely unknown. Here we show that RPA2A represses key flowering genes including FLOWERING LOCUS T (FT), AGAMOUS (AG) and AGAMOUS LIKE 71 (AGL71) to suppress floral transition by cooperating with the PRC2 complex. RPA2A is vigorously expressed in dividing cells and required for correct DNA replication. Mutation of RPA2A leads to early flowering, which is dependent on ectopic expression of key flowering genes including FT molecularly and genetically. RPA2A and PRC2 have common target genes including FT, AG and AGL71 supported using genetic analysis, transcriptome profiling and H3K27me3 ChIP-seq analysis. Furthermore, RPA2A physically interacts with PRC2 components CLF, EMF2 and MSI1, which recruits CLF to the chromatin loci of FT, AG and AGL71. Together, our results show that the replication protein RPA2A recruits PRC2 to key flowering genes through physical protein interaction, thereby repressing the expression of these genes to suppress floral transition in Arabidopsis.
RPA2A 是拟南芥中保守异源三聚体复制蛋白 A(RPA)的亚基,是一种必需的复制体成分,在 DNA 复制过程中与单链 DNA 结合。RPA2A 控制着一系列发育过程,但潜在的机制在很大程度上尚不清楚。在这里,我们表明 RPA2A 通过与 PRC2 复合物合作,抑制包括 FLOWERING LOCUS T(FT)、AGAMOUS(AG)和 AGAMOUS LIKE 71(AGL71)在内的关键开花基因的表达,从而抑制花的转变。RPA2A 在分裂细胞中大量表达,是正确复制 DNA 所必需的。RPA2A 的突变导致早期开花,这依赖于包括 FT 在内的关键开花基因的异位表达,分子和遗传上。RPA2A 和 PRC2 具有共同的靶基因,包括 FT、AG 和 AGL71,这得到了遗传分析、转录组谱分析和 H3K27me3 ChIP-seq 分析的支持。此外,RPA2A 与 PRC2 成分 CLF、EMF2 和 MSI1 发生物理相互作用,将 CLF 招募到 FT、AG 和 AGL71 的染色质基因座。总之,我们的研究结果表明,复制蛋白 RPA2A 通过物理蛋白相互作用招募 PRC2 到关键开花基因,从而抑制这些基因的表达,从而抑制拟南芥的花转变。