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通过亲和纯化和质谱法鉴定拟南芥中的夜间复合体相关蛋白

Identification of Evening Complex Associated Proteins in Arabidopsis by Affinity Purification and Mass Spectrometry.

作者信息

Huang He, Alvarez Sophie, Bindbeutel Rebecca, Shen Zhouxin, Naldrett Michael J, Evans Bradley S, Briggs Steven P, Hicks Leslie M, Kay Steve A, Nusinow Dmitri A

机构信息

From the ‡Donald Danforth Plant Science Center, 975 N. Warson Road, St. Louis, Missouri, 63132;

§University of California San Diego, Division of Biological Sciences, Cell and Developmental Biology Section, 9500 Gilman Drive, La Jolla, California 92093-0116;

出版信息

Mol Cell Proteomics. 2016 Jan;15(1):201-17. doi: 10.1074/mcp.M115.054064. Epub 2015 Nov 6.

Abstract

Many species possess an endogenous circadian clock to synchronize internal physiology with an oscillating external environment. In plants, the circadian clock coordinates growth, metabolism and development over daily and seasonal time scales. Many proteins in the circadian network form oscillating complexes that temporally regulate myriad processes, including signal transduction, transcription, protein degradation and post-translational modification. In Arabidopsis thaliana, a tripartite complex composed of EARLY FLOWERING 4 (ELF4), EARLY FLOWERING 3 (ELF3), and LUX ARRHYTHMO (LUX), named the evening complex, modulates daily rhythms in gene expression and growth through transcriptional regulation. However, little is known about the physical interactions that connect the circadian system to other pathways. We used affinity purification and mass spectrometry (AP-MS) methods to identify proteins that associate with the evening complex in A. thaliana. New connections within the circadian network as well as to light signaling pathways were identified, including linkages between the evening complex, TIMING OF CAB EXPRESSION1 (TOC1), TIME FOR COFFEE (TIC), all phytochromes and TANDEM ZINC KNUCKLE/PLUS3 (TZP). Coupling genetic mutation with affinity purifications tested the roles of phytochrome B (phyB), EARLY FLOWERING 4, and EARLY FLOWERING 3 as nodes connecting the evening complex to clock and light signaling pathways. These experiments establish a hierarchical association between pathways and indicate direct and indirect interactions. Specifically, the results suggested that EARLY FLOWERING 3 and phytochrome B act as hubs connecting the clock and red light signaling pathways. Finally, we characterized a clade of associated nuclear kinases that regulate circadian rhythms, growth, and flowering in A. thaliana. Coupling mass spectrometry and genetics is a powerful method to rapidly and directly identify novel components and connections within and between complex signaling pathways.

摘要

许多物种拥有内源性生物钟,以使内部生理机能与振荡的外部环境同步。在植物中,生物钟在每日和季节性时间尺度上协调生长、代谢和发育。生物钟网络中的许多蛋白质形成振荡复合物,在时间上调节无数过程,包括信号转导、转录、蛋白质降解和翻译后修饰。在拟南芥中,由早花4(ELF4)、早花3(ELF3)和LUX节律失调(LUX)组成的三方复合物,即夜间复合物,通过转录调控调节基因表达和生长的日常节律。然而,关于将生物钟系统与其他途径联系起来的物理相互作用却知之甚少。我们使用亲和纯化和质谱(AP-MS)方法来鉴定与拟南芥夜间复合物相关的蛋白质。确定了生物钟网络内以及与光信号通路的新联系,包括夜间复合物、CAB表达时间1(TOC1)、咖啡时间(TIC)、所有光敏色素和串联锌指/加3(TZP)之间的联系。将基因突变与亲和纯化相结合,测试了光敏色素B(phyB)、早花4和早花3作为连接夜间复合物与生物钟和光信号通路的节点的作用。这些实验建立了途径之间的层次关联,并表明了直接和间接相互作用。具体而言,结果表明早花3和光敏色素B作为连接生物钟和红光信号通路的枢纽。最后,我们鉴定了一类调节拟南芥生物钟节律、生长和开花的相关核激酶。将质谱分析和遗传学相结合是一种快速直接鉴定复杂信号通路内部和之间新组分及联系的强大方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/07c8/4762519/e2352a51c293/zjw0011652170001.jpg

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