Benevides J M, Wang A H, Thomas G J
Division of Cell Biology and Biophysics, School of Biological Sciences, University of Missouri-Kansas City 64110-2499.
Nucleic Acids Res. 1993 Mar 25;21(6):1433-8. doi: 10.1093/nar/21.6.1433.
Cobalt hexammine [Co(NH3)6(3+)] is an efficient DNA complexing agent which significantly perturbs nucleic acid secondary structure. We have employed red excitation (647.1 nm) from a krypton laser to obtain Raman spectra of the highly colored complexes formed between cobalt hexammine and crystals of the DNA oligomers, d(5BrCGAT5BrCG) and d(CGCGATCGCG), both of which incorporate out-of-alternation pyrimidine/purine sequences. The Co(NH3)6(3+) complex of d(5BrCGAT5BrCG) exhibits a typical Z-form Raman signature, similar to that reported previously for the alternating d(CGCGCG) sequence. Comparison of the Raman bands of d(5BrCGAT5BrCG) with those of other oligonucleotide and polynucleotide structures suggests that C3'-endo/syn and C3'-endo/anti thymidines may exhibit distinctive nucleoside conformation markers, and tentative assignments are proposed. The Raman markers for C2'-endo/anti adenosine in this Z-DNA are consistent with those reported previously for B-DNA crystals containing C2'-endo/anti dA. Raman bands of the cobalt hexammine complex of d(CGCGATCGCG) are those of B-DNA, but with significant differences from the previously characterized B-DNA dodecamer, d(CGCAAATTTGCG). The observed differences suggest an unusual deoxyguanosine conformer, possibly related to a previously characterized structural intermediate in the B-->Z transition. The present results show that crystallization of d(CGCGATCGCG) in the presence of cobalt hexammine is not alone sufficient to induce the left-handed Z-DNA conformation. This investigation represents the first application of off-resonance Raman spectroscopy for characterization of highly chromophoric DNA and illustrates the feasibility of the Raman method for investigating other structurally perturbed states of DNA-cobalt hexammine complexes.
六氨合钴[Co(NH₃)₆(³⁺)]是一种高效的DNA络合剂,能显著扰乱核酸二级结构。我们使用氪激光的红色激发光(647.1 nm)来获取六氨合钴与DNA寡聚物d(5BrCGAT5BrCG)和d(CGCGATCGCG)晶体形成的高度显色络合物的拉曼光谱,这两种寡聚物都包含非交替的嘧啶/嘌呤序列。d(5BrCGAT5BrCG)的Co(NH₃)₆(³⁺)络合物表现出典型的Z型拉曼特征,类似于先前报道的交替d(CGCGCG)序列的特征。将d(5BrCGAT5BrCG)的拉曼谱带与其他寡核苷酸和多核苷酸结构的谱带进行比较表明,C3'-内型/顺式和C3'-内型/反式胸苷可能表现出独特的核苷构象标记,并提出了初步归属。这种Z-DNA中C2'-内型/反式腺苷的拉曼标记与先前报道的含有C2'-内型/反式dA的B-DNA晶体的标记一致。d(CGCGATCGCG)的六氨合钴络合物的拉曼谱带是B-DNA的谱带,但与先前表征的B-DNA十二聚体d(CGCAAATTTGCG)有显著差异。观察到的差异表明存在一种不寻常的脱氧鸟苷构象异构体,可能与先前表征的B→Z转变中的结构中间体有关。目前的结果表明,在六氨合钴存在下d(CGCGATCGCG)的结晶不足以单独诱导左手Z-DNA构象。这项研究代表了非共振拉曼光谱在表征高发色性DNA方面的首次应用,并说明了拉曼方法用于研究DNA-六氨合钴络合物其他结构扰动状态的可行性。