He Gaofei, Tolic Ana, Bashkin James K, Poon Gregory M K
Department of Chemistry and Biochemistry and Center for Nanoscience, University of Missouri - St. Louis, St. Louis, MO 63121, USA.
College of Pharmacy, Washington State University, Spokane, WA 99210, USA.
Nucleic Acids Res. 2015 Apr 30;43(8):4322-31. doi: 10.1093/nar/gkv267. Epub 2015 Mar 30.
The ETS family of transcription factors exemplifies current uncertainty in how eukaryotic genetic regulators with overlapping DNA sequence preferences achieve target site specificity. PU.1 and Ets-1 represent archetypes for studying site discrimination by ETS proteins because their DNA-binding domains are the most divergent in sequence, yet they share remarkably superimposable DNA-bound structures. To gain insight into the contrasting thermodynamics and kinetics of DNA recognition by these two proteins, we investigated the structure and dynamics of site discrimination by their DNA-binding domains. Electrophoretic mobilities of complexes formed by the two homologs with circularly permuted binding sites showed significant dynamic differences only for DNA complexes of PU.1. Free solution measurements by dynamic light scattering showed PU.1 to be more dynamic than Ets-1; moreover, dynamic changes are strongly coupled to site discrimination by PU.1, but not Ets-1. Interrogation of the protein/DNA interface by DNA footprinting showed similar accessibility to dimethyl sulfate for PU.1/DNA and Ets-1/DNA complexes, indicating that the dynamics of PU.1/DNA complexes reside primarily outside that interface. An information-based analysis of the two homologs' binding motifs suggests a role for dynamic coupling in PU.1's ability to enforce a more stringent sequence preference than Ets-1 and its proximal sequence homologs.
转录因子的ETS家族体现了当前在具有重叠DNA序列偏好的真核基因调控因子如何实现靶位点特异性方面的不确定性。PU.1和Ets-1是研究ETS蛋白位点识别的原型,因为它们的DNA结合结构域在序列上差异最大,但它们具有明显可叠加的DNA结合结构。为了深入了解这两种蛋白质对DNA识别的热力学和动力学差异,我们研究了它们DNA结合结构域位点识别的结构和动力学。由这两种同源物与环状排列的结合位点形成的复合物的电泳迁移率仅在PU.1的DNA复合物中显示出显著的动态差异。通过动态光散射进行的自由溶液测量表明,PU.1比Ets-1更具动态性;此外,动态变化与PU.1的位点识别紧密相关,而与Ets-1无关。通过DNA足迹法对蛋白质/DNA界面的研究表明,PU.1/DNA和Ets-1/DNA复合物对硫酸二甲酯的可及性相似,这表明PU.1/DNA复合物的动力学主要存在于该界面之外。对这两种同源物结合基序的基于信息分析表明,动态偶联在PU.1比Ets-1及其近端序列同源物执行更严格序列偏好的能力中发挥作用。