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14-3-3衔接蛋白是大麦种子萌发过程中脱落酸信号转导的中间介质。

14-3-3 adaptor proteins are intermediates in ABA signal transduction during barley seed germination.

作者信息

Schoonheim Peter J, Sinnige Mark P, Casaretto Jose A, Veiga Helena, Bunney Tom D, Quatrano Ralph S, de Boer Albertus H

机构信息

Department of Structural Biology, Faculty of Earth and Life Sciences, Vrije Universiteit, De Boelelaan 1085, 1081 HV Amsterdam, The Netherlands.

出版信息

Plant J. 2007 Jan;49(2):289-301. doi: 10.1111/j.1365-313X.2006.02955.x.

Abstract

Proteins of the 14-3-3 family have well-defined functions as regulators of plant primary metabolism and ion homeostasis. However, neither their function nor action mechanism in plant hormonal signaling have been fully addressed. Here we show that abscisic acid (ABA) affects both expression and protein levels of five 14-3-3 isoforms in embryonic barley roots. As ABA prolongs the presence of 14-3-3 proteins in the elongating radicle, we tested whether 14-3-3s are instrumental in ABA action using RNA interference. Transient co-expression of 14-3-3 RNAi constructs along with an ABA-responsive promoter showed that each 14-3-3 is functional in generating an ABA response. In a yeast two-hybrid screen, we identified three new 14-3-3 interactors that belong to the ABF protein family. Moreover, using a yeast two-hybrid assay, we show that the transcription factor HvABI5, which binds to cis-acting elements of the ABA-inducible HVA1 promoter, interacts with three of the five 14-3-3s. Our analyses identify two 14-3-3 binding motifs in HvABI5 that are essential for 14-3-3 binding and proper in vivo trans-activation activity of HvABI5. In line with these results, 14-3-3 silencing effectively blocks trans-activation. Our results indicate that 14-3-3 genes/proteins are not only under the control of ABA, but that they control ABA action as well.

摘要

14-3-3家族蛋白作为植物初级代谢和离子稳态的调节因子,其功能已明确。然而,它们在植物激素信号传导中的功能和作用机制尚未完全阐明。在此,我们表明脱落酸(ABA)影响大麦胚根中5种14-3-3亚型的表达和蛋白水平。由于ABA延长了14-3-3蛋白在伸长胚根中的存在时间,我们使用RNA干扰测试了14-3-3是否在ABA作用中发挥作用。14-3-3 RNAi构建体与ABA应答启动子的瞬时共表达表明,每种14-3-3在产生ABA应答中都具有功能。在酵母双杂交筛选中,我们鉴定出3个属于ABF蛋白家族的新的14-3-3相互作用蛋白。此外,通过酵母双杂交试验,我们表明与ABA诱导型HVA1启动子的顺式作用元件结合的转录因子HvABI5与5种14-3-3中的3种相互作用。我们的分析在HvABI5中鉴定出两个14-3-3结合基序,它们对于14-3-3结合和HvABI5在体内的适当反式激活活性至关重要。与这些结果一致,14-3-3沉默有效地阻断了反式激活。我们的结果表明,14-3-3基因/蛋白不仅受ABA调控,而且它们也控制ABA的作用。

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