Boger D L, Invergo B J, Coleman R S, Zarrinmayeh H, Kitos P A, Thompson S C, Leong T, McLaughlin L W
Department of Chemistry, Purdue University, West Lafayette, IN 47907.
Chem Biol Interact. 1990;73(1):29-52. doi: 10.1016/0009-2797(90)90107-x.
The comparative DNA binding properties and cytotoxic activity of CDPIn methyl esters (n = 1-5) vs. PDE-In methyl esters (n = 1-3) are detailed in studies which provide experimental evidence for the intrinsic importance of stabilizing hydrophobic binding and non-covalent van der Waals contacts dominant in the CC-1065/B-DNA minor groove binding. High affinity minor groove binding to DNA was established through: (1) the observation of CDPI3 binding (UV) but not unwinding of supercoiled DNA (phi 174 RFI DNA) thus excluding intercalative binding; (2) the observation of CDPI3 binding to T4 phage DNA (UV, delta Tm) in which the major groove is occluded by glycosylation thus excluding major groove binding; (3) the observation of salt (Na+) concentration independent high affinity CDPI3 binding to poly(dA . poly(dT) thus excluding simple electrostatic binding to the DNA phosphate backbone; and further inferred through (4) the observation of an intense induced dichroism (ICD, poly(dA) . poly(dT) and poly(dG) . poly(dC) [phi]23(358) = 24,000 and 23,500). This high affinity minor groove binding is sufficient to produce a potent cytotoxic effect.(ABSTRACT TRUNCATED AT 400 WORDS)
CDPIn甲酯(n = 1 - 5)与PDE - In甲酯(n = 1 - 3)的比较DNA结合特性和细胞毒性活性在相关研究中详细阐述,这些研究为稳定疏水结合和CC - 1065/B - DNA小沟结合中占主导的非共价范德华接触的内在重要性提供了实验证据。通过以下方式确定了与DNA的高亲和力小沟结合:(1)观察到CDPI3结合(紫外)但超螺旋DNA(φ174 RFI DNA)未解旋,因此排除了嵌入结合;(2)观察到CDPI3与T4噬菌体DNA结合(紫外,ΔTm),其中大沟被糖基化封闭,因此排除了大沟结合;(3)观察到盐(Na +)浓度不影响CDPI3与聚(dA·聚(dT)的高亲和力结合,因此排除了与DNA磷酸骨架的简单静电结合;并通过(4)观察到强烈的诱导圆二色性(ICD,聚(dA)·聚(dT)和聚(dG)·聚(dC)[φ23(358) = 24,000和23,500]进一步推断。这种高亲和力小沟结合足以产生强大的细胞毒性作用。(摘要截断于400字)