Strobel O K, Keyes R S, Bobst A M
Department of Chemistry, University of Cincinnati, Ohio 45221.
Biochemistry. 1990 Sep 18;29(37):8522-8. doi: 10.1021/bi00489a003.
Conformation detection and base dynamics of spin-labeled Z-DNA have been investigated by electron paramagnetic resonance (EPR) spectroscopy. The two synthesized and characterized probes used in this study were C(5)-nitroxide-labeled 2'-deoxycytidine 5'-triphosphates, pppDCAT and pppDCAVAT, which serve as suitable substrates for Micrococcus luteus DNA polymerase. Enzymatic incorporation of these probes into (dG-dC)n yields the EPR-active alternating copolymers (dG-dC,DCAT)n and (dG-dC,-DCAVAT)n. These polymers assume typical B- and Z-DNA conformations under respective low (0.1 M NaCl) and high (4.5 M NaCl) salt conditions, as evidenced by their UV-circular dichroism spectra. The EPR line shape of (dG-dC,DCAT)n in Z-form is unique and significantly different from the B-form EPR spectrum. A similar observation is made for (dG-dC,DCAVAT)n. Thus, the EPR line shapes of these spin-labeled DNAs are indicative of their local conformations. The EPR spectra, analyzed with a previously published motional model [Kao, S.-C., Polnaszek, C.F., Toppin, C.R., & Bobst, A.M. (1983) Biochemistry 22, 5563-5568], indicate tau perpendicular values of 4 and 7 ns for the B- and Z-forms, respectively. Therefore, the base dynamics of Z-DNA are about two times slower than in B-DNA.
通过电子顺磁共振(EPR)光谱研究了自旋标记的Z-DNA的构象检测和碱基动力学。本研究中使用的两种合成并表征的探针是C(5)-氮氧化物标记的2'-脱氧胞苷5'-三磷酸,即pppDCAT和pppDCAVAT,它们是藤黄微球菌DNA聚合酶的合适底物。将这些探针酶促掺入(dG-dC)n中可产生具有EPR活性的交替共聚物(dG-dC,DCAT)n和(dG-dC,-DCAVAT)n。这些聚合物在各自的低(0.1 M NaCl)和高(4.5 M NaCl)盐条件下呈现典型的B-和Z-DNA构象,其紫外圆二色光谱证明了这一点。(dG-dC,DCAT)n在Z型中的EPR线形状独特,与B型EPR光谱有显著差异。对(dG-dC,DCAVAT)n也有类似的观察结果。因此,这些自旋标记DNA的EPR线形状表明了它们的局部构象。用先前发表的运动模型[Kao, S.-C., Polnaszek, C.F., Toppin, C.R., & Bobst, A.M. (1983) Biochemistry 22, 5563-5568]分析的EPR光谱表明,B型和Z型的τ垂直值分别为4和7 ns。因此,Z-DNA的碱基动力学比B-DNA慢约两倍。