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形成SCF(ZTL)复合物是昼夜节律正确调节所必需的。

Formation of an SCF(ZTL) complex is required for proper regulation of circadian timing.

作者信息

Han Linqu, Mason Mary, Risseeuw Eddy P, Crosby William L, Somers David E

机构信息

Department of Plant Cellular and Molecular Biology, Ohio State University, Columbus, OH, USA.

出版信息

Plant J. 2004 Oct;40(2):291-301. doi: 10.1111/j.1365-313X.2004.02207.x.

Abstract

The circadian timing system involves an autoregulatory transcription/translation feedback loop that incorporates a diverse array of factors to maintain a 24-h periodicity. In Arabidopsis a novel F-box protein, ZEITLUPE (ZTL), plays an important role in the control of the free-running period of the circadian clock. As a class, F-box proteins are well-established components of the Skp/Cullin/F-box (SCF) class of E3 ubiquitin ligases that link the target substrates to the core ubiquitinating activity of the ligase complex via direct association with the Skp protein. Here we identify and characterize the SCFZTL complex in detail. Yeast two-hybrid tests demonstrate the sufficiency and necessity of the F-box domain for Arabidopsis Skp-like protein (ASK) interactions and the dispensability of the unique N-terminal LOV domain in this association. Co-immunoprecipitation of full-length (FL) ZTL with the three known core components of SCF complexes (ASK1, AtCUL1 and AtRBX1) demonstrates that ZTL can assemble into an SCF complex in vivo. F-box-containing truncated versions of ZTL (LOV-F and F-kelch) can complex with SCF components in vivo, whereas stably expressed LOV or kelch domains alone cannot. Stable expression of F-box-mutated FL ZTL eliminates the shortened period caused by mild ZTL overexpression and also abolishes ASK1 interaction in vivo. Reduced levels of the core SCF component AtRBX1 phenocopy the long period phenotype of ztl loss-of-function mutations, demonstrating the functional significance of the SCFZTL complex. Taken together, our data establish SCFZTL as an essential SCF class E3 ligase controlling circadian period in plants.

摘要

昼夜节律计时系统涉及一个自动调节的转录/翻译反馈环,该反馈环包含多种因素以维持24小时的周期性。在拟南芥中,一种新型的F-box蛋白,即zeitlupe(ZTL),在控制生物钟的自由运转周期中起重要作用。作为一个类别,F-box蛋白是Skp/Cullin/F-box(SCF)类E3泛素连接酶的既定组成部分,它们通过与Skp蛋白直接结合将靶底物与连接酶复合物的核心泛素化活性联系起来。在这里,我们详细鉴定并表征了SCFZTL复合物。酵母双杂交试验证明了F-box结构域对于拟南芥Skp样蛋白(ASK)相互作用的充分性和必要性,以及该结构域中独特的N端LOV结构域在这种关联中的非必需性。全长(FL)ZTL与SCF复合物的三个已知核心成分(ASK1、AtCUL1和AtRBX1)的共免疫沉淀表明,ZTL可以在体内组装成SCF复合物。含F-box的ZTL截短版本(LOV-F和F-kelch)可以在体内与SCF成分形成复合物,而单独稳定表达的LOV或kelch结构域则不能。F-box突变的FL ZTL的稳定表达消除了由轻度ZTL过表达引起的周期缩短,并且也消除了体内ASK1的相互作用。核心SCF成分AtRBX1水平的降低模拟了ztl功能丧失突变的长周期表型,证明了SCFZTL复合物的功能重要性。综上所述,我们的数据确定SCFZTL是控制植物昼夜节律周期的一种必需的SCF类E3连接酶。

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