Choi Sang Chul, Lee Shinyoung, Kim Sung-Ryul, Lee Yang-Seok, Liu Chunyan, Cao Xiaofeng, An Gynheung
Crop Biotech Institute, Kyung Hee University, Yongin 446-701, Korea.
Plant Physiol. 2014 Mar;164(3):1326-37. doi: 10.1104/pp.113.228049. Epub 2014 Jan 13.
Trithorax group proteins are chromatin-remodeling factors that activate target gene expression by antagonistically functioning against the Polycomb group. In Arabidopsis (Arabidopsis thaliana), Arabidopsis Trithorax protein1 (ATX1) regulates flowering time and floral organ identity. Here, we observed that suppression of Oryza sativa Trithorax1 (OsTrx1), an ortholog of ATX1, delayed flowering time in rice (Oryza sativa). Because the delay occurred only under long-day conditions, we evaluated the flowering signal pathways that specifically function under long-day conditions. Among them, the OsMADS50 and Heading date1 pathways were not affected by the mutation. However, the Grain number, plant height, and heading date7 (Ghd7) pathway was altered in ostrx1. Transcript levels of OsGI, phytochrome genes, and Early heading date3 (Ehd3), which function upstream of Ghd7, were unchanged in the mutant. Because Trx group proteins form a complex with other proteins to modify the chromatin structure of target genes, we investigated whether OsTrx1 interacts with a previously identified protein that functions upstream of Ghd7. We demonstrated that the plant homeodomain motif of OsTrx1 binds to native histone H3 from the calf thymus and that OsTrx1 binds to Ehd3 through the region between the plant homeodomain and SET domains. Finally, we showed that the SET domain at the C-terminal end of OsTrx1 has histone H3 methyltransferase activity when incubated with oligonucleosomes. Our results suggest that OsTrx1 plays an important role in regulating flowering time in rice by modulating chromatin structure.
三胸复合物蛋白是染色质重塑因子,通过与多梳复合物发挥拮抗作用来激活靶基因表达。在拟南芥中,拟南芥三胸蛋白1(ATX1)调控开花时间和花器官特征。在此,我们观察到,水稻中ATX1的直系同源基因——水稻三胸蛋白1(OsTrx1)受到抑制后,水稻的开花时间延迟。由于这种延迟仅在长日照条件下出现,我们评估了在长日照条件下特异性发挥作用的开花信号通路。其中,OsMADS50和抽穗期1信号通路不受该突变影响。然而,在ostrx1突变体中,粒数、株高和抽穗期7(Ghd7)信号通路发生了改变。在该突变体中,功能位于Ghd7上游的OsGI、光敏色素基因和早熟3(Ehd3)的转录水平未发生变化。由于三胸复合物蛋白与其他蛋白形成复合物以修饰靶基因的染色质结构,我们研究了OsTrx1是否与先前鉴定的、在Ghd7上游发挥作用的蛋白相互作用。我们证明,OsTrx1的植物同源结构域基序与来自小牛胸腺的天然组蛋白H3结合,并且OsTrx1通过植物同源结构域和SET结构域之间的区域与Ehd3结合。最后,我们发现,当与寡核小体一起孵育时,OsTrx1 C末端的SET结构域具有组蛋白H3甲基转移酶活性。我们的结果表明,OsTrx1通过调节染色质结构在调控水稻开花时间方面发挥重要作用。