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DNA binding mechanism revealed by high resolution crystal structure of Arabidopsis thaliana WRKY1 protein

机译:拟南芥WRKY1蛋白的高分辨率晶体结构揭示了DNA结合机制

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摘要

WRKY proteins, defined by the conserved WRKYGQK sequence, are comprised of a large superfamily of transcription factors identified specifically from the plant kingdom. This superfamily plays important roles in plant disease resistance, abiotic stress, senescence as well as in some developmental processes. In this study, the Arabidopsis WRKY1 was shown to be involved in the salicylic acid signaling pathway and partially dependent on NPR1; a C-terminal domain of WRKY1, AtWRKY1-C, was constructed for structural studies. Previous investigations showed that DNA binding of the WRKY proteins was localized at the WRKY domains and these domains may define novel zinc-binding motifs. The crystal structure of the AtWRKY1-C determined at 1.6 angstrom resolution has revealed that this domain is composed of a globular structure with five beta strands, forming an antiparallel beta-sheet. A novel zinc-binding site is situated at one end of the beta-sheet, between strands beta 4 and beta 5. Based on this high-resolution crystal structure and site-directed mutagenesis, we have defined and confirmed that the DNA-binding residues of AtWRKY1-C are located at beta 2 and beta 3 strands. These results provided us with structural information to understand the mechanism of transcriptional control and signal transduction events of the WRKY proteins.
机译:由保守的WRKYGQK序列定义的WRKY蛋白由特异于植物界的转录因子超家族组成。该超家族在植物抗病性,非生物胁迫,衰老以及某些发育过程中起重要作用。在这项研究中,拟南芥WRKY1被证明参与水杨酸信号通路,部分依赖NPR1。构建了WRKY1的C末端结构域AtWRKY1-C,用于结构研究。先前的研究表明WRKY蛋白的DNA结合位于WRKY域中,这些域可能会定义新的锌结合基序。在1.6埃分辨率下确定的AtWRKY1-C的晶体结构表明,该域由具有五个β链的球状结构组成,形成反平行的β折叠。一个新的锌结合位点位于β-折叠的一端,位于β4和β5链之间。基于这种高分辨率的晶体结构和定点诱变,我们确定并确认了DNA结合残基AtWRKY1-C的第一个位于beta 2和beta 3链。这些结果为我们提供了结构信息,以了解WRKY蛋白的转录控制和信号转导事件的机制。

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