Targeted destabilization of HY5 during light-regulated development of Arabidopsis

拟南芥 下胚轴 黄化 细胞生物学 转录因子 生物 光形态发生 苗木 黑暗 核心 基因 突变体 植物 遗传学 生物化学
作者
Mark T. Østerlund,Christian S. Hardtke,Ning Wei,Xing Wang Deng
出处
期刊:Nature [Springer Nature]
卷期号:405 (6785): 462-466 被引量:1326
标识
DOI:10.1038/35013076
摘要

Arabidopsis seedlings display contrasting developmental patterns depending on the ambient light. Seedlings grown in the light develop photomorphogenically, characterized by short hypocotyls and expanded green cotyledons. In contrast, seedlings grown in darkness become etiolated, with elongated hypocotyls and dosed cotyledons on an apical hook. Light signals, perceived by multiple photoreceptors and transduced to downstream regulators, dictate the extent of photomorphogenic development in a quantitative manner. Two key downstream components, COP1 and HY5, act antagonistically in regulating seedling development. HY5 is a bZIP transcription factor that binds directly to the promoters of light-inducible genes, promoting their expression and photomorphogenic development. COP1 is a RING-finger protein with WD-40 repeats whose nuclear abundance is negatively regulated by light. COP1 interacts directly with HY5 in the nucleus to regulate its activity negatively. Here we show that the abundance of HY5 is directly correlated with the extent of photomorphogenic development, and that the COP1-HY5 interaction may specifically target HY5 for proteasome-mediated degradation in the nucleus.
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