Kegler Carsten, Lenk Ingo, Krawczyk Stefanie, Scholz Ronald, Gatz Christiane
Albrecht-von-Haller-Institut fuer Pflanzenwissenschaften, Universitaet Goettingen, Untere Karspuele 2, Germany.
Plant Mol Biol. 2004 May;55(2):153-64. doi: 10.1007/s11103-004-0110-9.
Activation sequence-1 (as-1)-like regulatory cis elements mediate transcriptional activation in response to increased levels of plant signalling molecules auxin and salicylic acid (SA). Our earlier work has shown that tobacco cellular as-1-binding complex SARP (salicylic acid responsive protein) is primarily comprised of bZIP protein TGA2.2 and of minor amounts of a protein that cross-reacts with an antibody directed against related bZIP factor TGA2.1. As this protein was significantly smaller than recombinant TGA2.1, the origin of this protein had remained unresolved. Here we demonstrate that it corresponds to a distinct cleavage product of TGA2.1 generated during extract preparation. Overexpression of TGA2.1 led to increased levels of the TGA2.1/TGA2.2 heterodimer which was as effective with regard to enhancing the SA-inducibility of as-1 containing target gene Nt103 as corresponding amounts of the TGA2.2 homodimer. Thus, the TGA2.1 specific N-terminal domain, which had revealed transcriptional activation potential in yeast, did not show enhanced transcriptional activation in planta. TGA2.1 even had a negative effect on the SA-induced expression of the truncated CaMV 35S (-90) promoter that contains an isolated as-1-element upstream of the TATA-box. Plants expressing a TGA mutant deficient in DNA binding (TGA2.1trd) showed reduced levels of SA-inducible Nt103 expression, thus resembling plants expressing the analogous TGA2.2 derivative TGA2.2trd. In contrast to TGA2.2trd, TGA2.1trd did not reduce auxin-induced expression of Nt103 and SA-induced expression of pathogenesis related protein PR-1a, indicating that TGA2.1trd and TGA2.2trd differ in their capacity to outcompete regulatory factors involved in these regulatory pathways.
激活序列1(as-1)样调控顺式元件介导转录激活,以响应植物信号分子生长素和水杨酸(SA)水平的升高。我们早期的研究表明,烟草细胞中与as-1结合的复合物SARP(水杨酸响应蛋白)主要由bZIP蛋白TGA2.2和少量与针对相关bZIP因子TGA2.1的抗体发生交叉反应的蛋白组成。由于这种蛋白明显小于重组TGA2.1,其来源一直未得到解决。在此,我们证明它对应于提取物制备过程中产生的TGA2.1的一种独特切割产物。TGA2.1的过表达导致TGA2.1/TGA2.2异二聚体水平增加,就增强含as-1的靶基因Nt103的SA诱导性而言,其效果与相应量的TGA2.2同二聚体相同。因此,在酵母中显示出转录激活潜力的TGA2.1特异性N端结构域,在植物中并未表现出增强的转录激活作用。TGA2.1甚至对截短的CaMV 35S(-90)启动子的SA诱导表达有负面影响,该启动子在TATA框上游含有一个分离的as-1元件。表达缺乏DNA结合能力的TGA突变体(TGA2.1trd)的植物显示出SA诱导的Nt103表达水平降低,因此类似于表达类似TGA2.2衍生物TGA2.2trd的植物。与TGA2.2trd不同,TGA2.1trd并未降低生长素诱导的Nt103表达和SA诱导的病程相关蛋白PR-1a的表达,这表明TGA2.1trd和TGA2.2trd在竞争参与这些调控途径的调控因子的能力上存在差异。