Kim Yeon Jeong, Kim Woe Yeon, Somers David E
Department of Molecular Genetics, The Ohio State University, Columbus, OH 43210, USA.
Division of Applied Life Science (BK21 Four), Plant Biological Rhythm Research Center (PBRRC), Plant Molecular Biology and Biotechnology Research Center (PMBBRC), Gyeongsang National University, Jinju 52828, Republic of Korea.
bioRxiv. 2024 Jul 2:2024.06.20.599783. doi: 10.1101/2024.06.20.599783.
Arabidopsis () is a core component of the circadian oscillator which also plays a crucial role in freezing tolerance. PRR7 undergoes proteasome-dependent degradation to discretely phase maximal expression in early evening. While its transcriptional repressive activity on downstream genes is integral to cold regulation, the mechanism of the conditional regulation of the PRR7 protein activity is unknown. We used double mutant analysis, protein interaction and ubiquitylation assays to establish that the ubiquitin ligase adaptor, (), controls the protein accumulation pattern of PRR7 through direct protein-protein interactions. Freezing tolerance and electrolyte leakage assays show that PRR7 enhances cold temperature sensitivity, supported by ChIP-qPCR at () and () promoters where PRR7 levels were higher in hos15 mutants. We establish that HOS15 mediates PRR7 protein turnover through enhanced ubiquitylation at low temperature in the dark. Under the same conditions, increased PRR7 association with the promoter regions of and in correlates with decreased and transcription and enhanced freezing sensitivity. We propose a novel mechanism whereby HOS15-mediated regulation of PRR7 provides an intersection between the circadian system and other cold acclimation pathways leading to freezing tolerance through upregulation of and
拟南芥(Arabidopsis)是生物钟振荡器的核心组成部分,在抗冻性方面也起着关键作用。PRR7经历蛋白酶体依赖性降解,以在傍晚时分离散地使最大表达相位化。虽然其对下游基因的转录抑制活性是冷调节所必需的,但PRR7蛋白活性的条件调节机制尚不清楚。我们使用双突变分析、蛋白质相互作用和泛素化分析来确定泛素连接酶适配器HOS15通过直接的蛋白质-蛋白质相互作用控制PRR7的蛋白质积累模式。抗冻性和电解质渗漏分析表明,PRR7增强了低温敏感性,在hos15突变体中PRR7水平较高的COR15A和COR15B启动子处的ChIP-qPCR支持了这一点。我们确定HOS15通过在黑暗中低温下增强泛素化来介导PRR7蛋白的周转。在相同条件下,PRR7与hos15中COR15A和COR15B启动子区域的结合增加与COR15A和COR15B转录减少以及冷冻敏感性增强相关。我们提出了一种新机制,即HOS15介导的PRR7调节提供了生物钟系统与其他冷驯化途径之间的交叉点,通过上调COR15A和COR15B导致抗冻性。