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Elucidating the evolutionary conserved DNA-binding specificities of WRKY transcription factors by molecular dynamics and in vitro binding assays

机译:通过分子动力学和体外结合试验阐明WRKY转录因子的进化保守DNA结合特异性

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摘要

WRKY transcription factors constitute a large protein family in plants that is involved in the regulation of developmental processes and responses to biotic or abiotic stimuli. The question arises how stimulus-specific responses are mediated given that the highly conserved WRKY DNA-binding domain (DBD) exclusively recognizes the 'TTGACY' W-box consensus. We speculated that the W-box consensus might be more degenerate and yet undetected differences in the W-box consensus of WRKYs of different evolutionary descent exist. The phylogenetic analysis of WRKY DBDs suggests that they evolved from an ancestral group IIc-like WRKY early in the eukaryote lineage. A direct descent of group IIc WRKYs supports a monophyletic origin of all other group II and III WRKYs from group I by loss of an N-terminal DBD. Group I WRKYs are of paraphyletic descent and evolved multiple times independently. By homology modeling, molecular dynamics simulations and in vitro DNA-protein interaction-enzyme-linked immunosorbent assay with AtWRKY50 (IIc), AtWRKY33 (I) and AtWRKY11 (IId) DBDs, we revealed differences in DNA-binding specificities. Our data imply that other components are essentially required besides the W-box-specific binding to DNA to facilitate a stimulus-specific WRKY function.
机译:WRKY转录因子构成了植物中的一个大蛋白家族,参与了发育过程的调节以及对生物或非生物刺激的反应。鉴于高度保守的WRKY DNA结合域(DBD)仅识别“ TTGACY” W-box共有序列,因此出现了一个问题,即如何介导刺激特异性反应。我们推测W-box共识可能会更加退化,但在不同进化世代的WRKY的W-box共识中仍存在未发现的差异。 WRKY DBD的系统发育分析表明,它们在真核生物谱系的早期从类似IIc的祖先群体进化而来。 IIc WRKYs的直接后代通过丢失N末端DBD支持I组的所有其他II和III WRKYs的单系起源。第一组WRKY具有亲缘关系的血统,并且独立进化多次。通过同源建模,分子动力学模拟和AtWRKY50(IIc),AtWRKY33(I)和AtWRKY11(IId)DBD的体外DNA-蛋白质相互作用-酶联免疫吸附测定,我们揭示了DNA结合特异性的差异。我们的数据表明,除了W盒特异性结合DNA之外,还需要其他成分来促进刺激特异性WRKY功能。

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