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14-3-3蛋白通过与AtWRI1相互作用介导植物种子油生物合成。

14-3-3 protein mediates plant seed oil biosynthesis through interaction with AtWRI1.

作者信息

Ma Wei, Kong Que, Mantyla Jenny J, Yang Yang, Ohlrogge John B, Benning Christoph

机构信息

Department of Plant Biology, Michigan State University, East Lansing, MI, 48824, USA.

Great Lakes Bioenergy Research Center, Michigan State University, East Lansing, MI, 48824, USA.

出版信息

Plant J. 2016 Oct;88(2):228-235. doi: 10.1111/tpj.13244. Epub 2016 Aug 30.

Abstract

Plant 14-3-3 proteins are phosphopeptide-binding proteins, belonging to a large family of proteins involved in numerous physiological processes including primary metabolism, although knowledge about the function of 14-3-3s in plant lipid metabolism is sparse. WRINKLED1 (WRI1) is a key transcription factor that governs plant oil biosynthesis. At present, AtWRI1-interacting partners remain largely unknown. Here, we show that 14-3-3 proteins are able to interact with AtWRI1, both in yeast and plant cells. Transient co-expression of 14-3-3- and AtWRI1-encoding cDNAs led to increased oil biosynthesis in Nicotiana benthamiana leaves. Stable transgenic plants overproducing a 14-3-3 protein also displayed increased seed oil content. Co-production of a 14-3-3 protein with AtWRI1 enhanced the transcriptional activity of AtWRI1. The 14-3-3 protein was found to increase the stability of AtWRI1. A possible 14-3-3 binding motif was identified in one of the two AP2 domains of AtWRI1, which was also found to be critical for the interaction of AtWRI1 with an E3 ligase linker protein. Thus, we hypothesize a regulatory mechanism by which the binding of 14-3-3 to AtWRI1 interferes with the interaction of AtWRI1 and the E3 ligase, thereby protecting AtWRI1 from degradation. Taken together, our studies identified AtWRI1 as a client of 14-3-3 proteins and provide insights into a role of 14-3-3 in mediating plant oil biosynthesis.

摘要

植物14-3-3蛋白是磷酸肽结合蛋白,属于参与包括初级代谢在内的众多生理过程的一大类蛋白质,尽管关于14-3-3蛋白在植物脂质代谢中的功能的了解还很少。皱叶1(WRI1)是控制植物油生物合成的关键转录因子。目前,与AtWRI1相互作用的伙伴在很大程度上仍然未知。在这里,我们表明14-3-3蛋白能够在酵母和植物细胞中与AtWRI1相互作用。14-3-3和AtWRI1编码cDNA的瞬时共表达导致本氏烟草叶片中的油脂生物合成增加。过量产生14-3-3蛋白的稳定转基因植物也表现出种子油含量增加。14-3-3蛋白与AtWRI1的共同产生增强了AtWRI1的转录活性。发现14-3-3蛋白增加了AtWRI1的稳定性。在AtWRI1的两个AP2结构域之一中鉴定出一个可能的14-3-3结合基序,该基序也被发现对于AtWRI1与E3连接酶接头蛋白的相互作用至关重要。因此,我们假设一种调节机制,通过该机制14-3-3与AtWRI1的结合干扰AtWRI1与E3连接酶的相互作用,从而保护AtWRI1不被降解。综上所述,我们的研究将AtWRI1鉴定为14-3-3蛋白的一个客户,并为14-3-3在介导植物油生物合成中的作用提供了见解。

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