Kubota Akane, Ito Shogo, Shim Jae Sung, Johnson Richard S, Song Yong Hun, Breton Ghislain, Goralogia Greg S, Kwon Michael S, Laboy Cintrón Dianne, Koyama Tomotsugu, Ohme-Takagi Masaru, Pruneda-Paz Jose L, Kay Steve A, MacCoss Michael J, Imaizumi Takato
Department of Biology, University of Washington, Seattle, Washington, United States of America.
Department of Genome Sciences, University of Washington, Seattle, Washington, United States of America.
PLoS Genet. 2017 Jun 19;13(6):e1006856. doi: 10.1371/journal.pgen.1006856. eCollection 2017 Jun.
Photoperiod is one of the most reliable environmental cues for plants to regulate flowering timing. In Arabidopsis thaliana, CONSTANS (CO) transcription factor plays a central role in regulating photoperiodic flowering. In contrast to posttranslational regulation of CO protein, still little was known about CO transcriptional regulation. Here we show that the CINCINNATA (CIN) clade of class II TEOSINTE BRANCHED 1/ CYCLOIDEA/ PROLIFERATING CELL NUCLEAR ANTIGEN FACTOR (TCP) proteins act as CO activators. Our yeast one-hybrid analysis revealed that class II CIN-TCPs, including TCP4, bind to the CO promoter. TCP4 induces CO expression around dusk by directly associating with the CO promoter in vivo. In addition, TCP4 binds to another flowering regulator, GIGANTEA (GI), in the nucleus, and induces CO expression in a GI-dependent manner. The physical association of TCP4 with the CO promoter was reduced in the gi mutant, suggesting that GI may enhance the DNA-binding ability of TCP4. Our tandem affinity purification coupled with mass spectrometry (TAP-MS) analysis identified all class II CIN-TCPs as the components of the in vivo TCP4 complex, and the gi mutant did not alter the composition of the TCP4 complex. Taken together, our results demonstrate a novel function of CIN-TCPs as photoperiodic flowering regulators, which may contribute to coordinating plant development with flowering regulation.
光周期是植物调节开花时间最可靠的环境信号之一。在拟南芥中,CONSTANS(CO)转录因子在调节光周期开花中起核心作用。与CO蛋白的翻译后调控不同,关于CO的转录调控仍知之甚少。在这里,我们表明II类玉米分枝1/ 细胞周期蛋白/ 增殖细胞核抗原因子(TCP)蛋白的CINCINNATA(CIN)进化枝作为CO激活因子。我们的酵母单杂交分析表明,包括TCP4在内的II类CIN-TCPs与CO启动子结合。TCP4通过在体内直接与CO启动子结合,在黄昏时分诱导CO表达。此外,TCP4在细胞核中与另一个开花调节因子GIGANTEA(GI)结合,并以GI依赖的方式诱导CO表达。在gi突变体中,TCP4与CO启动子的物理结合减少,这表明GI可能增强TCP4的DNA结合能力。我们的串联亲和纯化结合质谱(TAP-MS)分析确定所有II类CIN-TCPs是体内TCP4复合物的组成部分,并且gi突变体没有改变TCP4复合物的组成。综上所述,我们的结果证明了CIN-TCPs作为光周期开花调节因子的新功能,这可能有助于协调植物发育与开花调控。