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Structural basis for the specialization of Nur, a nickel-specific Fur homolog, in metal sensing and DNA recognition

机译:Nur(一种镍特定的Fur同源物)在金属感测和DNA识别中的专业化的结构基础

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摘要

Nur, a member of the Fur family, is a nickel-responsive transcription factor that controls nickel homeostasis and anti-oxidative response in Streptomyces coelicolor. Here we report the 2.4-Å resolution crystal structure of Nur. It contains a unique nickel-specific metal site in addition to a nonspecific common metal site. The identification of the 6-5-6 motif of the Nur recognition box and a Nur/DNA complex model reveals that Nur mainly interacts with terminal bases of the palindrome on complex formation. This contrasts with more distributed contacts between Fur and the n-1-n type of the Fur-binding motif. The disparity between Nur and Fur in the conformation of the S1-S2 sheet in the DNA-binding domain can explain their different DNA-recognition patterns. Furthermore, the fact that the specificity of Nur in metal sensing and DNA recognition is conferred by the specific metal site suggests that its introduction drives the evolution of Nur orthologs in the Fur family.
机译:Nur是Fur家族的成员,是一种镍响应转录因子,可控制天蓝色链霉菌中的镍稳态和抗氧化响应。在这里,我们报告了Nur的2.4Å分辨率晶体结构。除非特定的常见金属位点外,它还包含一个独特的镍特定的金属位点。 Nur识别框的6-5-6母题和Nur / DNA复合物模型的鉴定表明,Nur在复合物形成时主要与回文的末端碱基相互作用。这与Fur和Fur结合基序的n-1-n类型之间分布更广泛的接触形成对比。 DNA结合域中S1-S2片的构象中Nur和Fur之间的差异可以解释其不同的DNA识别模式。此外,Nur在金属感测和DNA识别中的特异性是由特定的金属位点赋予的,这表明Nur的引入驱动了Fur系列中Nur直系同源物的进化。

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