COP1 positively regulates ABA signaling during Arabidopsis seedling growth in darkness by mediating ABA-induced ABI5 accumulation

泛素连接酶 脱落酸 COP9信号体 黑暗 生物 光形态发生 拟南芥 泛素 细胞生物学 抑制因子 苗木 信号转导 转录因子 拟南芥 突变体 植物 生物化学 基因 蛋白酶 肽水解酶类
作者
Jing Peng,Meijiao Wang,Xiaoji Wang,Lijuan Qi,Can Guo,Hong Li,Cong Li,Yan Yan,Yun Zhou,William Terzaghi,Zhen Li,Chun‐Peng Song,Feng Qin,Zhizhong Gong,Jigang Li
出处
期刊:The Plant Cell [Oxford University Press]
卷期号:34 (6): 2286-2308 被引量:14
标识
DOI:10.1093/plcell/koac073
摘要

Abstract CONSTITUTIVELY PHOTOMORPHOGENIC1 (COP1), a well-characterized E3 ubiquitin ligase, is a central repressor of seedling photomorphogenic development in darkness. However, whether COP1 is involved in modulating abscisic acid (ABA) signaling in darkness remains largely obscure. Here, we report that COP1 is a positive regulator of ABA signaling during Arabidopsis seedling growth in the dark. COP1 mediates ABA-induced accumulation of ABI5, a transcription factor playing a key role in ABA signaling, through transcriptional and post-translational regulatory mechanisms. We further show that COP1 physically interacts with ABA-hypersensitive DCAF1 (ABD1), a substrate receptor of the CUL4-DDB1 E3 ligase targeting ABI5 for degradation. Accordingly, COP1 directly ubiquitinates ABD1 in vitro, and negatively regulates ABD1 protein abundance in vivo in the dark but not in the light. Therefore, COP1 promotes ABI5 protein stability post-translationally in darkness by destabilizing ABD1 in response to ABA. Interestingly, we reveal that ABA induces the nuclear accumulation of COP1 in darkness, thus enhancing its activity in propagating the ABA signal. Together, our study uncovers that COP1 modulates ABA signaling during seedling growth in darkness by mediating ABA-induced ABI5 accumulation, demonstrating that plants adjust their ABA signaling mechanisms according to their light environment.
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