Mallena Sirish, Lee Michael P H, Bailly Christian, Neidle Stephen, Kumar Arvind, Boykin David W, Wilson W David
Department of Chemistry, Georgia State University, P.O. Box 4098, Atlanta, Georgia 30302-4098, USA.
J Am Chem Soc. 2004 Oct 27;126(42):13659-69. doi: 10.1021/ja048175m.
The DNA minor groove is the interaction site for many enzymes and transcription control proteins and as a result, development of compounds that target the minor groove is an active research area. In an effort to develop biologically active minor groove agents, we are preparing and exploring the DNA interactions of a systematic set of diamidine derivatives with a powerful array of methods including DNase I footprinting, biosensor-SPR methods, and X-ray crystallography. Surprisingly, conversion of the parent phenyl-furan-phenyl diamidine to a phenyl-thiophene-benzimidazole derivative yields a compound with over 10-fold-increased affinity for the minor groove at AT sequences. Single conversion of the furan to a thiophene or a phenyl to benzimidazole does not cause a similar increase in affinity. X-ray results indicate a small bond angle difference between the C-S-C angle of thiophene and the C-O-C angle of furan that, when amplified out to the terminal amidines of the benzimidazole compounds, yields a very significant difference in the positions of the amidines and their DNA interaction strength.
DNA小沟是许多酶和转录调控蛋白的相互作用位点,因此,开发靶向小沟的化合物是一个活跃的研究领域。为了开发具有生物活性的小沟剂,我们正在制备并利用包括DNase I足迹法、生物传感器表面等离子体共振(SPR)法和X射线晶体学在内的一系列强大方法探索一组系统的二脒衍生物与DNA的相互作用。令人惊讶的是,将母体苯基-呋喃-苯基二脒转化为苯基-噻吩-苯并咪唑衍生物会产生一种对AT序列小沟亲和力增加超过10倍的化合物。呋喃单转化为噻吩或苯基单转化为苯并咪唑不会导致亲和力有类似的增加。X射线结果表明,噻吩的C-S-C角与呋喃的C-O-C角之间存在小的键角差异,当这种差异放大到苯并咪唑化合物的末端脒时,会导致脒的位置及其与DNA相互作用强度产生非常显著的差异。