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Crystal structure of the DNA-binding domain from Ndt80, a transcriptional activator required for meiosis in yeast

机译:来自Ndt80的DNA结合结构域的晶体结构,Ndt80是酵母减数分裂所需的转录激活因子

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Ndt80 is a transcriptional activator required for meiosis in the yeast Saccharomyces cerevisiae. Here, we report the crystal structure at 2.3 A resolution of the DNA-binding domain of Ndt80 experimentally phased by using the anomalous and isomorphous signal from a single ordered Se atom per molecule of 272-aa residues. The structure reveals a single ≈32-kDa domain with a distinct fold comprising a β-sandwich core elaborated with seven additional β-sheets and three short β-helices. Inspired by the structure, we have performed a mutational analysis and defined a DNA-binding motif in this domain. The DNA-binding domain of Ndt80 is homologous to a number of proteins from higher eukaryotes, and the residues that we have shown are required for DNA binding by Ndt80 are highly conserved among this group of proteins. These results suggest that Ndt80 is the defining member of a previously uncharacterized family of transcription factors, including the human protein (C11orf9), which has been shown to be highly expressed in invasive or metastatic tumor cells.
机译:Ndt80是酵母酿酒酵母减数分裂所需的转录激活因子。在这里,我们报告晶体结构的Ndt80的DNA结合域的分辨率为2.3 A,该分辨率是通过使用来自每个有序硒原子的272-aa残基的单个有序硒原子的异常和同构信号进行实验分阶段进行的。该结构揭示了一个单一的≈32-kDa结构域,具有明显的折叠,包括一个β夹心核心,该核心由七个附加的β折叠和三个短的β螺旋构成。受此结构的启发,我们进行了突变分析并在该结构域中定义了DNA结合基序。 Ndt80的DNA结合结构域与来自高级真核生物的许多蛋白质同源,我们显示的Ndt80的DNA结合所需的残基在这组蛋白质中高度保守。这些结果表明,Ndt80是以前未表征的转录因子家族的定义成员,其中包括人类蛋白质(C11orf9),该蛋白质已显示在侵袭性或转移性肿瘤细胞中高表达。

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