Skorobogaty A, White R J, Phillips D R, Reiss J A
Department of Biochemistry, La Trobe University, Bundoora, Victoria, Australia.
Drug Des Deliv. 1988 Jul;3(2):125-51.
The sequence specificity of daunomycin was assessed using competition equilibrium dialysis, DNAse I footprinting and an E. coli RNA polymerase transcription inhibition assay; similar studies were performed on adriamycin and a new bis-intercalating daunomycin dimer. The results clearly demonstrate that the highest affinity sites are CA for daunomycin and adriamycin, and CACA for the bis-daunomycin. Other modest affinity (GC, CG, CT, TC, CC, AC) and poor affinity binding sites (AA, AT, TA) were also observed. Our results are in agreement with (a) the observed 5'-pyrimidine-purine-3' sequence preference of intercalating drugs, (b) the reported role played by OH(9) of daunomycin in the stabilization of the drug/DNA intercalation complex, and (c) the thermodynamics of nearest neighbour base-pair unstacking at the intercalation site. The CA specificity of daunomycin and adriamycin suggests that their biological activity may arise from association with the CA containing sequences which are thought to be associated with genetic regulatory elements in eukaryotes. The implications for future anthracycline drug design are presented in this context.
使用竞争平衡透析、DNA酶I足迹法和大肠杆菌RNA聚合酶转录抑制试验评估了柔红霉素的序列特异性;对阿霉素和一种新型双插入柔红霉素二聚体进行了类似研究。结果清楚地表明,柔红霉素和阿霉素的最高亲和力位点是CA,双柔红霉素的是CACA。还观察到其他中等亲和力(GC、CG、CT、TC、CC、AC)和低亲和力结合位点(AA、AT、TA)。我们的结果与以下几点一致:(a)观察到的嵌入药物的5'-嘧啶-嘌呤-3'序列偏好,(b)柔红霉素的OH(9)在药物/DNA嵌入复合物稳定中所起的报道作用,以及(c)嵌入位点处最近邻碱基对解堆叠的热力学。柔红霉素和阿霉素的CA特异性表明,它们的生物活性可能源于与含CA序列的结合,这些序列被认为与真核生物中的基因调控元件有关。在此背景下阐述了对未来蒽环类药物设计的启示。