Lamoureux Jason S, Stuart David, Tsang Roger, Wu Cynthia, Glover J N Mark
Department of Biochemistry, University of Alberta, Edmonton, AB, T6G 2H7, Canada.
EMBO J. 2002 Nov 1;21(21):5721-32. doi: 10.1093/emboj/cdf572.
Progression through the middle phase of sporulation in Saccharomyces cerevisiae is promoted by the successful completion of recombination at the end of prophase I. Completion of meiotic recombination allows the activation of the sporulation-specific transcription factor Ndt80, which binds to a specific DNA sequence, the middle sporulation element (MSE), and activates approximately 150 genes to enable progression through meiosis. Here, we isolate the DNA-binding domain of Ndt80 and determine its crystal structure both free and in complex with an MSE-containing DNA. The structure reveals that Ndt80 is a member of the Ig-fold family of transcription factors. The structure of the DNA-bound form, refined at 1.4 A, reveals an unexpected mode of recognition of 5'-pyrimidine- guanine-3' dinucleotide steps by arginine residues that simultaneously recognize the 3'-guanine base through hydrogen bond interactions and the 5'-pyrimidine through stacking/van der Waals interactions. Analysis of the DNA-binding affinities of MSE mutants demonstrates the central importance of these interactions, and of the AT-rich portion of the MSE. Functional similarities between Ndt80 and the Caenorhabditis elegans p53 homolog suggest an evolutionary link between Ndt80 and the p53 family.
酿酒酵母孢子形成中期的进程由前期I结束时重组的成功完成所推动。减数分裂重组的完成允许孢子形成特异性转录因子Ndt80的激活,该因子与特定DNA序列即中期孢子形成元件(MSE)结合,并激活约150个基因以使减数分裂得以进行。在此,我们分离出Ndt80的DNA结合结构域,并确定其游离形式以及与含MSE的DNA形成复合物时的晶体结构。该结构表明Ndt80是Ig折叠转录因子家族的成员。以1.4埃分辨率精制的DNA结合形式的结构揭示了精氨酸残基识别5'-嘧啶-鸟嘌呤-3'二核苷酸步的意外模式,这些精氨酸残基通过氢键相互作用同时识别3'-鸟嘌呤碱基,并通过堆积/范德华相互作用识别5'-嘧啶。对MSE突变体的DNA结合亲和力分析表明这些相互作用以及MSE富含AT部分的核心重要性。Ndt80与秀丽隐杆线虫p53同源物之间的功能相似性表明Ndt80与p53家族之间存在进化联系。