Yesudhas Dhanusha, Anwar Muhammad Ayaz, Panneerselvam Suresh, Kim Han-Kyul, Choi Sangdun
Department of Molecular Science and Technology Ajou University Suwon Korea.
FEBS Open Bio. 2017 Oct 9;7(11):1750-1767. doi: 10.1002/2211-5463.12316. eCollection 2017 Nov.
Transcription factors (TFs) are gene expression regulators that bind to DNA in a sequence-specific manner and determine the functional characteristics of the gene. It is worthwhile to study the unique characteristics of such specific TF-binding pattern in DNA. Sox2 recognizes a 6- to 7-base pair consensus DNA sequence; the central four bases of the binding site are highly conserved, whereas the two to three flanking bases are variable. Here, we attempted to analyze the binding affinity and specificity of the Sox2 protein for distinct DNA sequence patterns via steered molecular dynamics, in which a pulling force is employed to dissociate Sox2 from Sox2-DNA during simulation to study the behavior of a complex under nonequilibrium conditions. The simulation results revealed that the first two stacking bases of the binding pattern have an exclusive impact on the binding affinity, with the corresponding mutant complexes showing greater binding and longer dissociation time than the experimental complexes do. In contrast, mutation of the conserved bases tends to reduce the affinity, and mutation of the complete conserved region disrupts the binding. It might pave the way to identify the most likely binding pattern recognized by Sox2 based on the affinity of each configuration. The α2-helix of Sox2 was found to be the key player in the Sox2-DNA association. The characterization of Sox2's binding patterns for the target genes in the genome helps in understanding of its regulatory functions.
转录因子(TFs)是基因表达调节因子,它们以序列特异性方式与DNA结合,并决定基因的功能特性。研究DNA中这种特定TF结合模式的独特特征是很有价值的。Sox2识别一个6至7个碱基对的共有DNA序列;结合位点的中央四个碱基高度保守,而两侧的两到三个碱基则是可变的。在这里,我们试图通过引导分子动力学分析Sox2蛋白对不同DNA序列模式的结合亲和力和特异性,在模拟过程中利用拉力使Sox2与Sox2-DNA解离,以研究复合物在非平衡条件下的行为。模拟结果表明,结合模式的前两个堆积碱基对结合亲和力有排他性影响,相应的突变复合物比实验复合物表现出更强的结合力和更长的解离时间。相比之下,保守碱基的突变往往会降低亲和力,而完整保守区域的突变则会破坏结合。这可能为基于每种构型的亲和力来确定Sox2最可能识别的结合模式铺平道路。发现Sox2的α2螺旋是Sox2-DNA结合中的关键因素。Sox2对基因组中靶基因的结合模式的表征有助于理解其调节功能。