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生物钟调控共激活因子可选择性地响应不同的温度应激条件,控制基因表达。

Clock-regulated coactivators selectively control gene expression in response to different temperature stress conditions in .

机构信息

Laboratory of Plant Molecular Physiology, Department of Applied Biological Chemistry, Graduate School of Agricultural and Life Sciences, The University of Tokyo, Bunkyo-ku, Tokyo 113-8657, Japan.

School of Life Science and Technology, Tokyo Institute of Technology, Yokohama, Kanagawa 226-8502, Japan.

出版信息

Proc Natl Acad Sci U S A. 2023 Apr 18;120(16):e2216183120. doi: 10.1073/pnas.2216183120. Epub 2023 Apr 10.

Abstract

Plants respond to severe temperature changes by inducing the expression of numerous genes whose products enhance stress tolerance and responses. Dehydration-responsive element (DRE)-binding protein 1/C-repeat binding factor (DREB1/CBF) transcription factors act as master switches in cold-inducible gene expression. Since genes are rapidly and strongly induced by cold stress, the elucidation of the molecular mechanisms of expression is vital for the recognition of the initial responses to cold stress in plants. A previous study indicated that the circadian clock-related MYB-like transcription factors REVEILLE4/LHY-CCA1-Like1 (RVE4/LCL1) and RVE8/LCL5 directly activate expression under cold stress conditions. These RVEs function in the regulation of circadian clock-related gene expression under normal temperature conditions. They also activate the expression of HSF-independent heat-inducible genes under high-temperature conditions. Thus, there are thought to be specific regulatory mechanisms whereby the target genes of these transcription factors are switched when temperature changes are sensed. We revealed that NIGHT LIGHT-INDUCIBLE AND CLOCK-REGULATED (LNK) proteins act as coactivators of RVEs in cold and heat stress responses in addition to regulating circadian-regulated genes at normal temperatures. We found that among the four LNKs, LNK1 and LNK2 function under normal and high-temperature conditions, and LNK3 and LNK4 function under cold conditions. Thus, these LNK proteins play important roles in inducing specific genes under different temperature conditions. Furthermore, LNK3 and LNK4 are specifically phosphorylated under cold conditions, suggesting that phosphorylation is involved in their activation.

摘要

植物通过诱导大量基因的表达来应对剧烈的温度变化,这些基因的产物增强了它们对压力的耐受性和响应能力。脱水响应元件(DRE)结合蛋白 1/C-重复结合因子(DREB1/CBF)转录因子作为冷诱导基因表达的主开关。由于 基因被低温胁迫迅速而强烈地诱导,因此阐明 表达的分子机制对于识别植物对低温胁迫的初始反应至关重要。先前的研究表明,生物钟相关的 MYB 样转录因子 REVEILLE4/LHY-CCA1-Like1(RVE4/LCL1)和 RVE8/LCL5 在低温胁迫条件下直接激活 基因的表达。这些 RVEs 在正常温度条件下调节生物钟相关基因的表达。它们还在高温条件下激活 HSP 非依赖型热诱导基因的表达。因此,人们认为在温度变化被感知时,这些转录因子的靶基因存在特定的调控机制。我们揭示了 NIGHT LIGHT-INDUCIBLE AND CLOCK-REGULATED(LNK)蛋白除了在正常温度下调节生物钟调节基因外,还作为 RVEs 在冷和热胁迫反应中的共激活因子。我们发现,在四个 LNK 中,LNK1 和 LNK2 在正常和高温条件下起作用,而 LNK3 和 LNK4 在低温条件下起作用。因此,这些 LNK 蛋白在不同温度条件下诱导特定基因的表达中发挥着重要作用。此外,LNK3 和 LNK4 在低温条件下特异性磷酸化,表明磷酸化参与了它们的激活。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dfc2/10120023/a4b0c0369639/pnas.2216183120fig01.jpg

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