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PIF1-Interacting Transcription Factors and Their Binding Sequence Elements Determine the in Vivo Targeting Sites of PIF1

机译:PIF1相互作用的转录因子及其结合序列元素决定了PIF1的体内靶向位点

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The bHLH transcription factor PHYTOCHROME INTERACTING FACTOR1 (PIF1) binds G-box elements in vitro and inhibits light-dependent germination in Arabidopsis thaliana. A previous genome-wide analysis of PIF1 targeting indicated that PIF1 binds 748 sites in imbibed seeds, only 59% of which possess G-box elements. This suggests the G-box is not the sole determinant of PIF1 targeting. The targeting of PIF1 to specific sites could be stabilized by PIF1-interacting transcription factors (PTFs) that bind other nearby sequence elements. Here, we report PIF1 targeting sites are enriched with not only G-boxes but also with other hexameric sequence elements we named G-box coupling elements (GCEs). One of these GCEs possesses an ACGT core and serves as a binding site for group A bZIP transcription factors, including ABSCISIC ACID INSENSITIVE5 (ABI5), which inhibits seed germination in abscisic acid signaling. PIF1 interacts with ABI5 and other group A bZIP transcription factors and together they target a subset of PIF1 binding sites in vivo. In vitro single-molecule fluorescence imaging confirms that ABI5 facilitates PIF1 binding to DNA fragments possessing multiple G-boxes or the GCE alone. Thus, we show in vivo PIF1 targeting to specific binding sites is determined by its interaction with PTFs and their binding to GCEs.
机译:bHLH转录因子植物染色体相互作用因子1(PIF1)在体外结合G-box元件并抑制拟南芥中的光依赖性萌发。先前对PIF1靶向的全基因组分析表明,PIF1结合了吸收种子中的748个位点,其中只有59%具有G-box元素。这表明G-box不是PIF1定位的唯一决定因素。通过与其他附近序列元件结合的PIF1相互作用转录因子(PTF),可以稳定PIF1对特定位点的靶向。在这里,我们报告PIF1靶向位点不仅富含G-box,而且富含我们称为G-box耦合元件(GCE)的其他六聚序列元素。这些GCE中的一个具有ACGT核心,并充当A组bZIP转录因子的结合位点,包括ABSCISIC ACID INSENSITIVE5(ABI5),后者可抑制脱落酸信号中的种子发芽。 PIF1与ABI5和其他A组bZIP转录因子相互作用,并且它们一起在体内靶向PIF1结合位点的子集。体外单分子荧光成像证实,ABI5促进PIF1与具有多个G-box或单独GCE的DNA片段结合。因此,我们显示体内PIF1靶向特定的结合位点是由其与PTF的相互作用及其与GCE的结合决定的。

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