Abe H, Yamaguchi-Shinozaki K, Urao T, Iwasaki T, Hosokawa D, Shinozaki K
Biological Resources Division, Japan International Research Center for Agricultural Sciences (JIRCAS), Ibaraki, Japan.
Plant Cell. 1997 Oct;9(10):1859-68. doi: 10.1105/tpc.9.10.1859.
In Arabidopsis, the induction of a dehydration-responsive gene, rd22, is mediated by abscisic acid (ABA) and requires protein biosynthesis for ABA-dependent gene expression. Previous experiments established that a 67-bp DNA fragment of the rd22 promoter is sufficient for dehydration- and ABA-induced gene expression and that this DNA fragment contains two closely located putative recognition sites for the basic helix-loop-helix protein MYC and one putative recognition site for MYB. We have carefully analyzed the 67-bp region of the rd22 promoter in transgenic tobacco plants and found that both the first MYC site and the MYB recognition site function as cis-acting elements in the dehydration-induced expression of the rd22 gene. A cDNA encoding a MYC-related DNA binding protein was isolated by DNA-ligand binding screening, using the 67-bp region as a probe, and designated rd22BP1. The rd22BP1 cDNA encodes a 68-kD protein that has a typical DNA binding domain of a basic region helix-loop-helix leucine zipper motif in MYC-related transcription factors. The rd22BP1 protein binds specifically to the first MYC recognition site in the 67-bp fragment. RNA gel blot analysis revealed that transcription of the rd22BP1 gene is induced by dehydration stress and ABA treatment, and its induction precedes that of rd22. We have reported a drought- and ABA-inducible gene that encodes the MYB-related protein ATMYB2. In a transient transactivation experiment using Arabidopsis leaf protoplasts, we demonstrated that both the rd22BP1 and ATMYB2 proteins activate transcription of the rd22 promoter fused to the beta-glucuronidase reporter gene. These results indicate that both the rd22BP1 (MYC) and ATMYB2 (MYB) proteins function as transcriptional activators in the dehydration- and ABA-inducible expression of the rd22 gene.
在拟南芥中,脱水应答基因rd22的诱导由脱落酸(ABA)介导,且ABA依赖的基因表达需要蛋白质生物合成。先前的实验证实,rd22启动子的一个67bp DNA片段足以实现脱水和ABA诱导的基因表达,并且该DNA片段包含两个紧密相邻的、假定的碱性螺旋-环-螺旋蛋白MYC识别位点以及一个MYB假定识别位点。我们仔细分析了转基因烟草植株中rd22启动子的67bp区域,发现第一个MYC位点和MYB识别位点均作为rd22基因脱水诱导表达中的顺式作用元件发挥功能。通过DNA-配体结合筛选,以67bp区域为探针,分离出一个编码与MYC相关的DNA结合蛋白的cDNA,并将其命名为rd22BP1。rd22BP1 cDNA编码一个68kD的蛋白,该蛋白在与MYC相关的转录因子中具有典型的碱性区域螺旋-环-螺旋亮氨酸拉链基序的DNA结合结构域。rd22BP1蛋白特异性结合67bp片段中的第一个MYC识别位点。RNA凝胶印迹分析表明,rd22BP1基因的转录受脱水胁迫和ABA处理诱导,且其诱导先于rd22。我们报道了一个干旱和ABA诱导型基因,其编码与MYB相关的蛋白ATMYB2。在使用拟南芥叶原生质体的瞬时反式激活实验中,我们证明rd22BP1和ATMYB2蛋白均激活与β-葡萄糖醛酸酶报告基因融合的rd22启动子的转录。这些结果表明,rd22BP1(MYC)和ATMYB2(MYB)蛋白在rd22基因的脱水和ABA诱导表达中均作为转录激活因子发挥作用。