Choi Chu H, Rapti Zoi, Gelev Vladimir, Hacker Michele R, Alexandrov Boian, Park Evelyn J, Park Jae Suk, Horikoshi Nobuo, Smerzi Augusto, Rasmussen Kim Ø, Bishop Alan R, Usheva Anny
Department of Medicine, Beth Israel Deaconess Medical Center and Harvard Medical School, Boston, Massachusetts, USA.
Biophys J. 2008 Jul;95(2):597-608. doi: 10.1529/biophysj.107.123471. Epub 2008 Apr 4.
We showed previously that anharmonic DNA dynamical features correlate with transcriptional activity in selected viral promoters, and hypothesized that areas of DNA softness may represent loci of functional significance. The nine known promoters from human adenovirus type 5 were analyzed for inherent DNA softness using the Peyrard-Bishop-Dauxois model and a statistical mechanics approach, using a transfer integral operator. We found a loosely defined pattern of softness peaks distributed both upstream and downstream of the transcriptional start sites, and that early transcriptional regions tended to be softer than late promoter regions. When reported transcription factor binding sites were superimposed on our calculated softness profiles, we observed a close correspondence in many cases, which suggests that DNA duplex breathing dynamics may play a role in protein recognition of specific nucleotide sequences and protein-DNA binding. These results suggest that genetic information is stored not only in explicit codon sequences, but also may be encoded into local dynamic and structural features, and that it may be possible to access this obscured information using DNA dynamics calculations.
我们之前表明,非谐DNA动力学特征与选定病毒启动子中的转录活性相关,并推测DNA柔软区域可能代表具有功能意义的位点。使用佩亚拉德-毕晓普-多索瓦模型和统计力学方法,通过转移积分算子,对来自人5型腺病毒的9个已知启动子的固有DNA柔软性进行了分析。我们发现了一种分布在转录起始位点上游和下游的定义松散的柔软性峰值模式,并且早期转录区域往往比晚期启动子区域更柔软。当将报道的转录因子结合位点叠加在我们计算出的柔软性图谱上时,我们在许多情况下观察到了密切的对应关系,这表明DNA双链呼吸动力学可能在蛋白质对特定核苷酸序列的识别和蛋白质-DNA结合中发挥作用。这些结果表明,遗传信息不仅存储在明确的密码子序列中,还可能编码在局部动态和结构特征中,并且有可能使用DNA动力学计算来获取这些隐藏的信息。