Izawa T, Foster R, Nakajima M, Shimamoto K, Chua N H
Laboratory of Plant Molecular Biology, Rockefeller University, New York, New York 10021-6399.
Plant Cell. 1994 Sep;6(9):1277-87. doi: 10.1105/tpc.6.9.1277.
Systematic protein-DNA binding studies have shown that plant basic leucine zipper (bZIP) proteins exhibit a differential binding specificity for ACGT motifs. Here, we show that the rice transcription activator-1 (RITA-1) displays a broad binding specificity for palindromic ACGT elements, being able to bind A-, C-, and G-box but not T-box elements. By using gel mobility shift assays with probes differing in sequences flanking the hexameric core, we identified high-affinity A-, C-, and G-box binding sites. Quantitative and competition DNA binding studies confirmed RITA-1 specificity for these sites. Using rice protoplasts as a transient expression system, we demonstrated that RITA-1 can transactivate reporter genes possessing high-affinity but not low-affinity RITA-1 binding sites. Our results established a direct relationship between in vivo transactivation and in vitro binding activity. Transient expression assays that demonstrated the ability of RITA-1 to transactivate a construct containing rita-1 5' flanking sequences suggest that the factor may be autoregulated. Histochemical analysis of transgenic rice plants showed that a rita-1-beta-glucuronidase transgene is expressed in aleurone and endosperm cells of developing rice seeds. We propose that RITA-1 plays a role in the regulation of rice genes expressed in developing rice seeds.
系统性的蛋白质-DNA结合研究表明,植物碱性亮氨酸拉链(bZIP)蛋白对ACGT基序表现出不同的结合特异性。在此,我们表明水稻转录激活因子-1(RITA-1)对回文ACGT元件具有广泛的结合特异性,能够结合A盒、C盒和G盒元件,但不能结合T盒元件。通过使用凝胶迁移率变动分析,对六聚体核心两侧序列不同的探针进行检测,我们确定了高亲和力的A盒、C盒和G盒结合位点。定量和竞争性DNA结合研究证实了RITA-1对这些位点的特异性。利用水稻原生质体作为瞬时表达系统,我们证明RITA-1能够激活具有高亲和力而非低亲和力RITA-1结合位点的报告基因。我们的结果确立了体内转录激活与体外结合活性之间的直接关系。瞬时表达分析表明RITA-1能够激活含有rita-1 5'侧翼序列的构建体,这表明该因子可能存在自调控作用。对转基因水稻植株的组织化学分析表明,rita-1-β-葡萄糖醛酸酶转基因在发育中的水稻种子的糊粉层和胚乳细胞中表达。我们认为RITA-1在调控发育中的水稻种子中表达的水稻基因方面发挥作用。