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Distinct class of DNA-binding domains is exemplified by a master regulator of phenotypic switching in Candida albicans

机译:DNA结合结构域的独特类别以白色念珠菌表型转换的主调节剂为例

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摘要

Among the most important classes of regulatory proteins are the sequence-specific DNA-binding proteins that control transcription through the occupancy of discrete DNA sequences within genomes. Currently, this class of proteins encompasses at least 37 distinct structural superfamilies and more than 100 distinct structural motifs. In this paper, we examine the transcriptional regulator Wor1, a master regulator of white-opaque switching in the human fungal pathogen Candida albicans. As assessed by a variety of algorithms, this protein has no sequence or structural similarity to any known DNA-binding protein. It is, however, conserved across the vast fungal lineage, with a 300aa region of sequence conservation. Here, we show that this 300aa region of Wor1 exhibits sequence-specific DNA binding and therefore represents a new superfamily of DNA-binding proteins. We identify the 14-nucleotide-pair DNA sequence recognized by Wor1, characterize the site through mutational analysis, and demonstrate that this sequence is sufficient for the Wor1-dependent activation of transcription in vivo. Within the 300aa DNA-binding conserved region, which we have termed the WOPR box, are two domains (WOPRa and WOPRb), dissimilar to each other but especially well-conserved across the fungal lineage. We show that the WOPR box binds DNA as a monomer and that neither domain, when expressed and purified separately, exhibits sequence-specific binding. DNA binding is restored, however, when the two isolated domains are added together. These results indicate that the WOPR family of DNA-binding proteins involves an unusual coupling between two dissimilar, covalently linked domains.
机译:调控蛋白中最重要的一类是序列特异性DNA结合蛋白,它们通过基因组内离散DNA序列的占据来控制转录。目前,这类蛋白质包括至少37个不同的结构超家族和100多个不同的结构基序。在本文中,我们研究了转录调节因子Wor1,它是人类真菌病原体白色念珠菌中白不透明转换的主要调控因子。如通过各种算法评估的,该蛋白质与任何已知的DNA结合蛋白均无序列或结构相似性。但是,它在整个真菌谱系中都是保守的,具有300aa的序列保守区。在这里,我们显示了Wor1的这个300aa区域表现出序列特异性的DNA结合,因此代表了DNA结合蛋白的一个新的超家族。我们鉴定了Wor1识别的14个核苷酸对DNA序列,通过突变分析表征了该位点,并证明了该序列对于体内转录的Wor1依赖性激活是足够的。在我们称为WOPR框的300aa DNA结合保守区内,有两个域(WOPRa和WOPRb)彼此不同,但在真菌谱系中特别保守。我们表明,WOPR框结合DNA作为单体,并且两个域都没有,当分别表达和纯化时,表现出序列特异性结合。然而,当两个分离的结构域加在一起时,DNA结合得以恢复。这些结果表明,WOPR DNA结合蛋白家族涉及两个不同的,共价连接的结构域之间的异常偶联。

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