Göhler Thomas, Jäger Stefan, Warnecke Gabriele, Yasuda Hideyo, Kim Ella, Deppert Wolfgang
Department of Tumor Virology, Heinrich-Pette-Institute Martinistrasse 52, 20251 Hamburg, Germany.
Nucleic Acids Res. 2005 Feb 18;33(3):1087-100. doi: 10.1093/nar/gki252. Print 2005.
Despite the loss of sequence-specific DNA binding, mutant p53 (mutp53) proteins can induce or repress transcription of mutp53-specific target genes. To date, the molecular basis for transcriptional modulation by mutp53 is not understood, but increasing evidence points to the possibility that specific interactions of mutp53 with DNA play an important role. So far, the lack of a common denominator for mutp53 DNA binding, i.e. the existence of common sequence elements, has hampered further characterization of mutp53 DNA binding. Emanating from our previous discovery that DNA structure is an important determinant of wild-type p53 (wtp53) DNA binding, we analyzed the binding of various mutp53 proteins to oligonucleotides mimicking non-B DNA structures. Using various DNA-binding assays we show that mutp53 proteins bind selectively and with high affinity to non-B DNA. In contrast to sequence-specific and DNA structure-dependent binding of wtp53, mutp53 DNA binding to non-B DNA is solely dependent on the stereo-specific configuration of the DNA, and not on DNA sequence. We propose that DNA structure-selective binding of mutp53 proteins is the basis for the well-documented interaction of mutp53 with MAR elements and for transcriptional activities mediates by mutp53.
尽管丧失了序列特异性DNA结合能力,但突变型p53(mutp53)蛋白仍可诱导或抑制mutp53特异性靶基因的转录。迄今为止,mutp53介导转录调控的分子基础尚不清楚,但越来越多的证据表明,mutp53与DNA的特异性相互作用可能起着重要作用。到目前为止,mutp53 DNA结合缺乏一个共同的特征,即共同序列元件的存在,这阻碍了对mutp53 DNA结合的进一步表征。基于我们之前的发现,即DNA结构是野生型p53(wtp53)DNA结合的重要决定因素,我们分析了各种mutp53蛋白与模拟非B型DNA结构的寡核苷酸的结合情况。使用各种DNA结合测定方法,我们发现mutp53蛋白能够选择性地、高亲和力地结合非B型DNA。与wtp53的序列特异性和DNA结构依赖性结合不同,mutp53与非B型DNA的结合仅取决于DNA的立体特异性构型,而不取决于DNA序列。我们提出,mutp53蛋白的DNA结构选择性结合是mutp53与MAR元件之间充分记录的相互作用以及mutp53介导的转录活性的基础。