Bailey S A, Graves D E, Rill R, Marsch G
Department of Chemistry, University of Mississippi, University 38677.
Biochemistry. 1993 Jun 8;32(22):5881-7. doi: 10.1021/bi00073a022.
The influences of base sequence on the thermodynamic properties associated with the interaction of actinomycin D with DNA are examined. It has been previously established that GpC steps of double-helical DNAs are highly preferred binding sites for actinomycin D. In this study, a series of oligonucleotides was designed and synthesized to probe the effects of flanking base sequence (adjacent to the GpC step) and novel non-GpC binding sites on the binding of actinomycin D. The use of these oligonucleotides provides a direct method for quantitating sequence specificities and actinomycin D binding energetics. Effects of different 5' and 3' flanking nucleotides on the interactions of actinomycin with the core GpC binding sites were examined using UV-visible spectrophotometric methods, and changes in binding energetics were quantitated. These studies demonstrate strong actinomycin D binding affinities to both classical GpC and an atypical non-GpC site. Enthalpy and entropy components of the DNA binding energetics for the GpC binding sites are compared and correlated with those determined for actinomycin D binding to the high-affinity non-GpC site of an 11-mer containing TGGGT as the central sequence. This TGGGT site, first suggested to be a high-affinity sequence in our earlier photoaffinity labeling studies, exhibits binding of actinomycin D comparable in strength to that of traditional actinomycin D binding sites (i.e., GpC steps). From these studies, the overall affinity and specific thermodynamic contributions (delta H degree, delta S degree) to binding of actinomycin D are demonstrated to be highly influenced both by the sequence at the intercalation site and by neighboring bases which flank the intercalation site.
研究了碱基序列对放线菌素D与DNA相互作用相关热力学性质的影响。先前已经确定,双螺旋DNA的GpC步是放线菌素D的高度优先结合位点。在本研究中,设计并合成了一系列寡核苷酸,以探究侧翼碱基序列(与GpC步相邻)和新型非GpC结合位点对放线菌素D结合的影响。使用这些寡核苷酸提供了一种直接方法来定量序列特异性和放线菌素D结合能学。利用紫外可见分光光度法研究了不同5'和3'侧翼核苷酸对放线菌素与核心GpC结合位点相互作用的影响,并对结合能学的变化进行了定量。这些研究表明,放线菌素D对经典GpC和非典型非GpC位点都具有很强的结合亲和力。比较了GpC结合位点的DNA结合能学的焓和熵成分,并将其与放线菌素D结合到以TGGGT为中心序列的11聚体的高亲和力非GpC位点所确定的成分进行了关联。这个TGGGT位点在我们早期的光亲和标记研究中首次被认为是一个高亲和力序列,其放线菌素D的结合强度与传统放线菌素D结合位点(即GpC步)相当。从这些研究中可以看出,放线菌素D结合的总体亲和力和特定热力学贡献(ΔH°,ΔS°)受到嵌入位点的序列以及嵌入位点侧翼相邻碱基的高度影响。