首页> 外文OA文献 >DNA-Binding Study Identifies C-Box and Hybrid C/G-Box or C/A-Box Motifs as High-Affinity Binding Sites for STF1 and LONG HYPOCOTYL5 Proteins1[C][W][OA]
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DNA-Binding Study Identifies C-Box and Hybrid C/G-Box or C/A-Box Motifs as High-Affinity Binding Sites for STF1 and LONG HYPOCOTYL5 Proteins1[C][W][OA]

机译:DNA结合研究确定C-Box和杂种C / G-Box或C / A-Box母题为STF1和长HYPOCOTYL5蛋白1的高亲和力结合位点[C] [W] [OA]

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摘要

LONG HYPOCOTYL5 (HY5) is a bZIP (basic leucine zipper) transcription factor that activates photomorphogenesis and root development in Arabidopsis (Arabidopsis thaliana). Previously, STF1 (soybean [Glycine max] TGACG-motif binding factor 1), a homologous legume protein with a RING-finger motif and a bZIP domain, was reported in soybean. To investigate the role of STF1, the phenotypes of transgenic Arabidopsis plants overexpressing STF1 and HY5 were compared. In addition, the DNA-binding properties of STF1 and HY5 were extensively studied using random binding site selection and electrophoretic mobility shift assay. Overexpression of STF1 in the hy5 mutant of Arabidopsis restored wild-type photomorphogenic and root development phenotypes of short hypocotyl, accumulation of chlorophyll, and root gravitropism with partial restoration of anthocyanin accumulation. This supports that STF1 is a homolog of HY5 with a role in light and hormone signaling. The DNA-binding properties of STF1 and HY5 are shown to be similar to each other in recognizing many ACGT-containing elements with a consensus sequence motif of 5′-(G/A)(G/A) TGACGT(C/G/A)(A/T/G)-3′. The motif represents a characteristically strong preference for flanking sequence to TGACGT and a larger sequence than the sequences recognized by the G-box binding factor and TGA protein families. The finding of C-box, hybrid C/G-, and C/A-boxes as high-affinity binding sites over the G-box and parameters associated with HY5 recognition define the criteria of HY5/STF1 protein-DNA interaction in the promoter regions. This study helps to predict the precise in vivo binding sites of the HY5 protein from the vast number of putative HY5 genomic binding sites analyzed by chromatin immunoprecipitation on chip.
机译:长HYPOCOTYL5(HY5)是一个bZIP(碱性亮氨酸拉链)转录因子,可激活拟南芥(Arabidopsis thaliana)的光形态发生和根系发育。以前,在大豆中报道了STF1(大豆[Glycine max] TGACG-基序结合因子1),一种具有RING-手指基序和bZIP结构域的同源豆类蛋白。为了研究STF1的作用,比较了过表达STF1和HY5的转基因拟南芥植物的表型。此外,使用随机结合位点选择和电泳迁移率变动分析广泛研究了STF1和HY5的DNA结合特性。拟南芥hy5突变体中STF1的过表达恢复了短胚轴的野生型光形态发生和根发育表型,叶绿素的积累和根向性,并恢复了花青素的积累。这支持STF1是HY5的同系物,在光和激素信号传导中起作用。 STF1和HY5的DNA结合特性在识别许多具有5'-(G / A)(G / A)TGACGT(C / G / A)共有序列基序的含ACGT的元素时显示出彼此相似的特性)(A / T / G)-3'。该基序代表着对TGACGT侧翼序列的特征性强烈偏爱,并且比G-box结合因子和TGA蛋白家族识别的序列更大。发现C-box,杂合C / G-和C / A-box作为G-box上的高亲和力结合位点以及与HY5识别相关的参数定义了启动子中HY5 / STF1蛋白质-DNA相互作用的标准地区。这项研究有助于通过芯片上的染色质免疫沉淀分析从大量推定的HY5基因组结合位点预测HY5蛋白的精确体内结合位点。

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