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Expression, purification and DNA-binding properties of zinc finger domains of DOF proteins from Arabidopsis thaliana

机译:拟南芥DOF蛋白锌指结构域的表达,纯化和DNA结合特性

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Introduction: DOF proteins are a family of plant-specific transcription factors with a conserved zinc finger (ZF) DNA-binding domain. Although several studies have demonstrated their specific DNA binding, quantitative affinity data is not available for the binding of DOF domains to their binding sites. Methods: ZF domains of DOF2.1, DOF3.4, and DOF5.8 from Arabidopsis thaliana were expressed and purified. Their DNA binding affinities were assessed using gel retardation assays and microscale thermophoresis with two different oligonucleotide probes containing one and two copies of recognition sequence AAAG. Results: DOF zinc finger domains (DOF-ZFs) were shown to form independently folded structures. Assessments using microscale thermophoresis demonstrated that DOF-ZFs interact more tightly (~ 100 fold) with double-motif probe than the single-motif probe. The overall Kd values for the DOF3.4-ZF and DOF5.8-ZF to the double-motif probe were ~2.3?±1 and 2.5?±1 ?μM, respectively. Conclusion: Studied DOF-ZF domains formed stable complexes with the double-motif probe. Although DOF3.4-ZF and DOF5.8-ZF do not dimerize with an appreciable affinity in the absence of DNA (judging from size-exclusion and multiangle laser light scattering data), it is possible that these ZFs form protein-protein contacts when bound to this oligonucleotide, consistent with previous reports that DOF proteins can homo- and hetero-dimerize.
机译:简介:DOF蛋白是植物特异性转录因子家族,具有保守的锌指(ZF)DNA结合结构域。尽管一些研究表明它们具有特定的DNA结合,但尚无法获得定量亲和力数据来将DOF域与它们的结合位点结合。方法:表达和纯化拟南芥DOF2.1,DOF3.4和DOF5.8的ZF结构域。使用凝胶阻滞分析和微尺度热泳用两种不同的寡核苷酸探针(包含一个和两个拷贝的识别序列AAAG)评估它们的DNA结合亲和力。结果:DOF锌指结构域(DOF-ZFs)显示形成独立折叠的结构。使用微型热泳的评估表明,DOF-ZF与双基序探针的相互作用比单基序探针更紧密(约100倍)。双基元探针的DOF3.4-ZF和DOF5.8-ZF的总Kd值分别为〜2.3?±1和2.5?±1?μM。结论:研究的DOF-ZF结构域与双基序探针形成稳定的复合物。尽管在没有DNA的情况下,DOF3.4-ZF和DOF5.8-ZF不会以明显的亲和力二聚(从尺寸排阻和多角度激光散射数据判断),但这些ZF可能在形成蛋白质时与蛋白质接触结合到该寡核苷酸上,这与以前关于DOF蛋白可以同二聚和异二聚的报道相一致。

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