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EDLL 基序:来自 AP2/ERF 转录因子的有效植物转录激活结构域。

The EDLL motif: a potent plant transcriptional activation domain from AP2/ERF transcription factors.

机构信息

Mendel Biotechnology Inc., 3935 Point Eden Way, Hayward, CA 94545, USA.

出版信息

Plant J. 2012 Jun;70(5):855-65. doi: 10.1111/j.1365-313X.2012.04935.x. Epub 2012 Mar 12.

Abstract

In plants, the ERF/EREBP family of transcriptional regulators plays a key role in adaptation to various biotic and abiotic stresses. These proteins contain a conserved AP2 DNA-binding domain and several uncharacterized motifs. Here, we describe a short motif, termed 'EDLL', that is present in AtERF98/TDR1 and other clade members from the same AP2 sub-family. We show that the EDLL motif, which has a unique arrangement of acidic amino acids and hydrophobic leucines, functions as a strong activation domain. The motif is transferable to other proteins, and is active at both proximal and distal positions of target promoters. As such, the EDLL motif is able to partly overcome the repression conferred by the AtHB2 transcription factor, which contains an ERF-associated amphiphilic repression (EAR) motif. We further examined the activation potential of EDLL by analysis of the regulation of flowering time by NF-Y (nuclear factor Y) proteins. Genetic evidence indicates that NF-Y protein complexes potentiate the action of CONSTANS in regulation of flowering in Arabidopsis; we show that the transcriptional activation function of CONSTANS can be substituted by direct fusion of the EDLL activation motif to NF-YB subunits. The EDLL motif represents a potent plant activation domain that can be used as a tool to confer transcriptional activation potential to heterologous DNA-binding proteins.

摘要

在植物中,ERF/EREBP 家族的转录调控因子在适应各种生物和非生物胁迫方面起着关键作用。这些蛋白质含有一个保守的 AP2 DNA 结合域和几个未被描述的基序。在这里,我们描述了一个短基序,称为“EDLL”,它存在于 AtERF98/TDR1 和来自同一 AP2 亚家族的其他成员中。我们表明,EDLL 基序具有独特的酸性氨基酸和疏水性亮氨酸排列,作为一个强大的激活结构域发挥作用。该基序可转移到其他蛋白质上,并在靶启动子的近端和远端位置都具有活性。因此,EDLL 基序能够部分克服由 AtHB2 转录因子引起的抑制,该因子含有一个 ERF 相关的两亲性抑制(EAR)基序。我们通过分析 NF-Y(核因子 Y)蛋白对开花时间的调节,进一步研究了 EDLL 的激活潜力。遗传证据表明,NF-Y 蛋白复合物增强了 CONSTANS 在拟南芥开花调控中的作用;我们表明,CONSTANS 的转录激活功能可以通过将 EDLL 激活基序直接融合到 NF-YB 亚基上来替代。EDLL 基序代表一种有效的植物激活结构域,可作为赋予异源 DNA 结合蛋白转录激活潜力的工具。

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