Kanofsky Konstantin, Rusche Jendrik, Eilert Lea, Machens Fabian, Hehl Reinhard
Institut für Genetik, Technische Universität Braunschweig, Spielmannstr. 7, 38106, Braunschweig, Germany.
Max-Planck-Institut für Molekulare Pflanzenphysiologie, Potsdam Science Park, Am Mühlenberg 1, Golm, 14476, Potsdam, Germany.
Plant Cell Rep. 2021 Jan;40(1):69-83. doi: 10.1007/s00299-020-02611-2. Epub 2020 Oct 2.
WRKY50 from A. thaliana requires WT-boxes at target gene promoters for activation and binding. Based on the genome-wide prediction of WRKY50 target genes and the similarity of a WRKY50 binding site to WT-boxes in microbe-associated molecular pattern (MAMP)-responsive cis-regulatory modules (CRM), four WT-box containing CRMs from the promoter region of three WRKY50 target genes were investigated for their interaction with WRKY50. These target genes are DJ1E, WRKY30 and ATBBE4. Two of the four CRMs, one from DJ1E and one from WRKY30, were able to activate reporter gene expression in the presence of WRKY50. Activation requires the WT-boxes GGACTTTT, GGACTTTG from DJ1E and GGACTTTC from WRKY30. WRKY50 does not activate a second CRM from WRKY30 and the CRM from ATBBE4, both containing the WT-box TGACTTTT. In vitro gel-shift assays demonstrate WT-box-specific binding of the WRKY50 DNA-binding domain to all four CRMs. This work shows a high flexibility of WRKY50 binding site recognition beyond the classic W-box TTGACC/T.
拟南芥中的WRKY50需要靶基因启动子处的WT-box来进行激活和结合。基于对WRKY50靶基因的全基因组预测以及WRKY50结合位点与微生物相关分子模式(MAMP)响应性顺式调控模块(CRM)中WT-box的相似性,研究了来自三个WRKY50靶基因启动子区域的四个含WT-box的CRM与WRKY50的相互作用。这些靶基因是DJ1E、WRKY30和ATBBE4。四个CRM中的两个,一个来自DJ1E,一个来自WRKY30,在存在WRKY50的情况下能够激活报告基因表达。激活需要DJ1E的WT-box GGACTTTT、GGACTTTG以及WRKY30的WT-box GGACTTTC。WRKY50不能激活来自WRKY30的另一个CRM以及来自ATBBE4的CRM,这两个CRM都含有WT-box TGACTTTT。体外凝胶迁移试验证明WRKY50的DNA结合结构域与所有四个CRM都存在WT-box特异性结合。这项工作表明,WRKY50结合位点识别具有高度灵活性,超出了经典的W-box TTGACC/T。