School of Biological Sciences and Centre for Systems Biology at Edinburgh, University of Edinburgh, The King's Buildings, Mayfield Road, Edinburgh EH9 3JD, UK.
Curr Biol. 2011 May 24;21(10):869-75. doi: 10.1016/j.cub.2011.03.060. Epub 2011 Apr 28.
Circadian clocks were, until recently, seen as a consequence of rhythmic transcription of clock components, directed by transcriptional/translational feedback loops (TTFLs). Oscillations of protein modification were then discovered in cyanobacteria. Canonical posttranslational signaling processes have known importance for clocks across taxa. More recently, evidence from the unicellular eukaryote Ostreococcus tauri revealed a transcription-independent, rhythmic protein modification shared in anucleate human cells. In this study, the Ostreococcus system reveals a central role for targeted protein degradation in the mechanism of circadian timing. The Ostreococcus clockwork contains a TTFL involving the morning-expressed CCA1 and evening-expressed TOC1 proteins. Cellular CCA1 and TOC1 protein content and degradation rates are analyzed qualitatively and quantitatively using luciferase reporter fusion proteins. CCA1 protein degradation rates, measured in high time resolution, feature a sharp clock-regulated peak under constant conditions. TOC1 degradation peaks in response to darkness. Targeted protein degradation, unlike transcription and translation, is shown to be essential to sustain TTFL rhythmicity throughout the circadian cycle. Although proteasomal degradation is not necessary for sustained posttranslational oscillations in transcriptionally inactive cells, TTFL and posttranslational oscillators are normally coupled, and proteasome function is crucial to sustain both.
生物钟直到最近才被视为时钟组件的节律性转录的结果,由转录/翻译反馈环(TTFL)指导。然后在蓝细菌中发现了蛋白质修饰的振荡。经典的翻译后信号过程对于跨分类群的生物钟具有已知的重要性。最近,来自单细胞真核生物海胆卵的证据揭示了一种非核人细胞中共享的转录独立、节律性蛋白质修饰。在这项研究中,海胆系统揭示了靶向蛋白降解在生物钟机制中的核心作用。海胆时钟包含一个涉及早晨表达的 CCA1 和晚上表达的 TOC1 蛋白的 TTFL。使用荧光素酶报告融合蛋白定性和定量分析细胞 CCA1 和 TOC1 蛋白含量和降解率。在恒定条件下,以高时间分辨率测量的 CCA1 蛋白降解率显示出明显的时钟调节峰。TOC1 降解在黑暗中响应。与转录和翻译不同,靶向蛋白降解被证明对于在整个生物钟周期中维持 TTFL 的节律性是必不可少的。虽然蛋白酶体降解对于转录失活细胞中持续的翻译后振荡不是必需的,但 TTFL 和翻译后振荡器通常是耦合的,蛋白酶体功能对于维持两者都是至关重要的。