Wang Tian-Jing, Huang Shuangzhan, Zhang Ai, Guo Peng, Liu Yutong, Xu Chunming, Cong Weixuan, Liu Bao, Xu Zheng-Yi
Key Laboratory of Molecular Epigenetics of the Ministry of Education (MOE), Northeast Normal University, Changchun, 130024, China.
New Phytol. 2021 Apr;230(2):567-584. doi: 10.1111/nph.17177. Epub 2021 Feb 12.
Abscisic acid (ABA) plays a crucial role in the adaptation of young seedlings to environmental stresses. However, the role of epigenetic components and core transcriptional machineries in the effect of ABA on seed germination and seedling growth remain unclear. Here, we show that a histone 3 lysine 4 (H3K4) demethylase, JMJ17, regulates the expression of ABA-responsive genes during seed germination and seedling growth. Using comparative interactomics, WRKY40, a central transcriptional repressor in ABA signaling, was shown to interact with JMJ17. WRKY40 facilitates the recruitment of JMJ17 to the ABI5 chromatin, which removes gene activation marks (H3K4me3) from the ABI5 chromatin, thereby repressing its expression. Additionally, WRKY40 represses the transcriptional activation activity of HY5, which can activate ABI5 expression by directly binding to its promoter. An increase in ABA concentrations decreases the affinity of WRKY40 for the ABI5 promoter. Thus, WRKY40 and JMJ17 are released from the ABI5 chromatin, activating HY5. The accumulated ABI5 protein further shows heteromeric interaction with HY5, and thus synergistically activates its own expression. Our findings reveal a novel transcriptional switch, composed of JMJ17-WRKY40 and HY5-ABI5 modules, which regulates the ABA response during seed germination and seedling development in Arabidopsis.
脱落酸(ABA)在幼苗适应环境胁迫过程中发挥着关键作用。然而,表观遗传成分和核心转录机制在ABA对种子萌发和幼苗生长影响中的作用仍不清楚。在此,我们表明组蛋白3赖氨酸4(H3K4)去甲基化酶JMJ17在种子萌发和幼苗生长过程中调节ABA响应基因的表达。通过比较互作组学研究发现,ABA信号传导中的核心转录抑制因子WRKY40与JMJ17相互作用。WRKY40促进JMJ17被招募到ABI5染色质上,从而去除ABI5染色质上的基因激活标记(H3K4me3),进而抑制其表达。此外,WRKY40抑制HY5的转录激活活性,而HY5可通过直接结合ABI5启动子来激活其表达。ABA浓度的增加会降低WRKY40与ABI5启动子的亲和力。因此,WRKY40和JMJ17从ABI5染色质上释放出来,激活HY5。积累的ABI5蛋白进一步与HY5形成异源相互作用,从而协同激活其自身的表达。我们的研究结果揭示了一个由JMJ17-WRKY40和HY5-ABI5模块组成的新型转录开关,该开关在拟南芥种子萌发和幼苗发育过程中调节ABA反应。