Bielawski K, Bielawska A, Bartulewicz D, Rózański A
Department of Medicinal Chemistry and Drug Technology, Medical Academy of Białystok, Poland.
Acta Biochim Pol. 2000;47(3):855-66.
A molecular mechanics and molecular dynamics approach was used to examine the structure of complexes formed between the d(CGCGAATTCGCG)2 duplex and netropsin, distamycin, and four carbocyclic analogues of netropsin and distamycin (1-4). The resulting structures of the ligand-DNA model complexes and their energetics were examined. It is predicted that the compounds 1-4 should have a decreased affinity for the minor groove of AT-rich regions in comparison to netropsin and distamycin. From the energetic analysis it appears that van der Waals and electrostatic interactions are more important than specific hydrogen bonds in stabilizing the ligand-duplex complexes. We predict that compounds 1 and 2 are effectively isohelical with the DNA minor groove. The superior DNA-binding afforded by 1 and 2 in comparison to 3 and 4 results from their more effective penetration into the minor groove and smaller perturbation of molecular structure upon complex formation.
采用分子力学和分子动力学方法研究了d(CGCGAATTCGCG)2双链体与纺锤菌素、偏端霉素以及纺锤菌素和偏端霉素的四种碳环类似物(1-4)形成的复合物的结构。研究了所得配体-DNA模型复合物的结构及其能量学。据预测,与纺锤菌素和偏端霉素相比,化合物1-4对富含AT区域的小沟的亲和力应会降低。从能量分析来看,在稳定配体-双链体复合物方面,范德华力和静电相互作用比特定氢键更为重要。我们预测化合物1和2与DNA小沟有效等螺旋。与3和4相比,1和2具有更好的DNA结合能力,这是因为它们能更有效地穿透小沟,且在形成复合物时分子结构的扰动较小。