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Transcription regulatory proteins in higher plants.
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Plant bZIP protein DNA binding specificity.植物碱性亮氨酸拉链蛋白的DNA结合特异性。
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A single Arabidopsis GF14 isoform possesses biochemical characteristics of diverse 14-3-3 homologues.单个拟南芥GF14亚型具有多种14-3-3同源物的生化特性。
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Differential interactions of promoter elements in stress responses of the Arabidopsis Adh gene.拟南芥乙醇脱氢酶基因应激反应中启动子元件的差异相互作用。
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Characterization of the Arabidopsis Adh G-box binding factor.拟南芥乙醇脱氢酶G盒结合因子的特性分析
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9
In vivo and in vitro characterization of protein interactions with the dyad G-box of the Arabidopsis Adh gene.拟南芥乙醇脱氢酶基因二元G-盒蛋白相互作用的体内和体外特性分析
Plant Cell. 1990 Mar;2(3):207-14. doi: 10.1105/tpc.2.3.207.
10
A plant leucine zipper protein that recognizes an abscisic acid response element.一种识别脱落酸应答元件的植物亮氨酸拉链蛋白。
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转录因子的准确性:GBF3是否负责拟南芥Adh的脱落酸调节表达?

Transcription factor veracity: is GBF3 responsible for ABA-regulated expression of Arabidopsis Adh?

作者信息

Lu G, Paul A L, McCarty D R, Ferl R J

机构信息

Horticultural Sciences Department, University of Florida, Gainesville 32611, USA.

出版信息

Plant Cell. 1996 May;8(5):847-57. doi: 10.1105/tpc.8.5.847.

DOI:10.1105/tpc.8.5.847
PMID:8672884
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC161143/
Abstract

Assignment of particular transcription factors to specific roles in promoter elements can be problematic, especially in systems such as the G-box, where multiple factors of overlapping specificity exist. In the Arabidopsis alcohol dehydrogenase (Adh) promoter, the G-box regulates expression in response to cold and dehydration, presumably through the action of abscisic acid (ABA), and is bound by a nuclear protein complex in vivo during expression in cell cultures. In this report, we test the conventional wisdom of biochemical approaches used to identify DNA binding proteins and assess their specific interactions by using the G-box and a nearby half G-box element of the Arabidopsis Adh promoter as a model system. Typical in vitro assays demonstrated specific interaction of G-box factor 3 (GBF3) with both the G-box and the half G-box element. Dimethyl sulfate footprint analysis confirmed that the in vitro binding signature of GBF3 essentially matches the footprint signature detected in vivo at the G-box. Because RNA gel blot data indicated that GBF3 is itself induced by ABA, we might have concluded that GBF3 is indeed the GBF responsible in cell cultures for binding to the Adh G-box and is therefore responsible for ABA-regulated expression of Adh. Potential limitations of this conclusion are exposed by the fact that other GBFs bind the G-box with the same signature as GBF3, and subtle differences between in vivo and in vitro footprint signatures indicate that factors other than or in addition to GBF3 interact with the half G-box element.

摘要

将特定转录因子分配到启动子元件中的特定作用可能存在问题,尤其是在诸如G盒这样的系统中,其中存在多个具有重叠特异性的因子。在拟南芥乙醇脱氢酶(Adh)启动子中,G盒响应寒冷和脱水调节表达,可能是通过脱落酸(ABA)的作用,并且在细胞培养物表达期间在体内被核蛋白复合物结合。在本报告中,我们以拟南芥Adh启动子的G盒和附近的半G盒元件为模型系统,测试用于鉴定DNA结合蛋白并评估其特异性相互作用的生化方法的传统观点。典型的体外试验表明G盒因子3(GBF3)与G盒和半G盒元件都有特异性相互作用。硫酸二甲酯足迹分析证实,GBF3的体外结合特征与在体内G盒处检测到的足迹特征基本匹配。因为RNA凝胶印迹数据表明GBF3本身是由ABA诱导的,我们可能会得出结论,GBF3确实是细胞培养物中负责与Adh G盒结合的GBF,因此负责ABA调节的Adh表达。其他GBF以与GBF3相同的特征结合G盒,以及体内和体外足迹特征之间的细微差异表明除GBF3之外或之外的其他因子与半G盒元件相互作用,这一事实揭示了该结论的潜在局限性。