Tanay Amos, Gat-Viks Irit, Shamir Ron
School of Computer Science, Tel-Aviv University, Tel-Aviv 69978, Israel.
Genome Res. 2004 May;14(5):829-34. doi: 10.1101/gr.2064404.
The interaction between transcription factors and their DNA binding sites is key to understanding gene regulation. By performing a genome-wide study of the evolutionary dynamics in yeast promoters, we provide a first global view of the network of selection forces in the evolution of transcription factor binding sites. This analysis gives rise to new models for binding site activity, identifies families of related binding sites, and characterizes the functional similarities among them. We discovered rich and highly optimized selective pressures operating inside and around these families. In several cases, this organization reveals that a single transcription factor has multiple functional modes. We demonstrate how such functional heterogeneity is related to the binding site's affinity and how it is exploited in transcription programs.
转录因子与其DNA结合位点之间的相互作用是理解基因调控的关键。通过对酵母启动子的进化动态进行全基因组研究,我们首次全面了解了转录因子结合位点进化过程中的选择力网络。该分析产生了结合位点活性的新模型,识别了相关结合位点家族,并描述了它们之间的功能相似性。我们发现这些家族内部和周围存在丰富且高度优化的选择压力。在几种情况下,这种组织方式表明单个转录因子具有多种功能模式。我们展示了这种功能异质性如何与结合位点的亲和力相关,以及它在转录程序中是如何被利用的。