Clark C L, Cecil P K, Singh D, Gray D M
The University of Texas at Dallas, Box 830688, Richardson, TX 75083-0688, USA.
Nucleic Acids Res. 1997 Oct 15;25(20):4098-105. doi: 10.1093/nar/25.20.4098.
Circular dichroism (CD) spectra and melting temperature (Tm) data for five duplexes containing phosphorothioate linkages were compared with data for four unmodified duplexes to assess the effect of phosphorothioate modification on the structure and stability of DNA. DNA and DNA.RNA duplexes. Nine duplexes were formed by mixing oligomers 24 nt long in 0.15 M K+(phosphate buffer), pH 7.0. Unmodified DNA.DNA and RNA.RNA duplexes were used as reference B-form and A-form structures. The CD spectra of the modified hybrids S-d(AC)12.r(GU)12 and r(AC)12.S-d(GT)12 differed from each other but were essentially the same as the spectra of the respective unmodified hybrids. They were more A-form than B-form in character. CD spectra of duplexes S-d(AC)12.d(GT)12 and d(AC)12.S-d(GT)12 were similar to that of d(AC)12.d(GT)12, except for a reduced long wavelength CD band. Sulfur modifications on both strands of the DNA duplex caused a pronounced effect on its CD spectrum. The order of thermal stability was: RNA.RNA > DNA.DNA > DNA.RNA > S-DNA.DNA > S-DNA. RNA > S-DNA.S-DNA. Phosphorothioation of one strand decreased the melting temperature by 7.8+/-0.6 degrees C, regardless of whether the substitution was in a hybrid or DNA duplex. Thermodynamic parameters were obtained from a multistate analysis of the thermal melting profiles. Interestingly, the destabilizing effect of the phosphorothioate substitution appears to arise from a difference in the entropy upon forming the DNA.DNA duplexes, while the destabilizing effect in the DNA.RNA hybrids appears to come from a difference in enthalpy.
将含有硫代磷酸酯键的五个双链体的圆二色性(CD)光谱和熔解温度(Tm)数据与四个未修饰双链体的数据进行比较,以评估硫代磷酸酯修饰对DNA、DNA.RNA双链体的结构和稳定性的影响。九个双链体是通过在pH 7.0的0.15 M K +(磷酸盐缓冲液)中混合24个核苷酸长的寡聚物形成的。未修饰的DNA.DNA和RNA.RNA双链体用作参考B型和A型结构。修饰后的杂交体S-d(AC)12.r(GU)12和r(AC)12.S-d(GT)12的CD光谱彼此不同,但与各自未修饰杂交体的光谱基本相同。它们在特征上更偏向A型而非B型。双链体S-d(AC)12.d(GT)12和d(AC)12.S-d(GT)12的CD光谱与d(AC)12.d(GT)12的相似,只是长波长CD带有所减弱。DNA双链体两条链上的硫修饰对其CD光谱有显著影响。热稳定性顺序为:RNA.RNA > DNA.DNA > DNA.RNA > S-DNA.DNA > S-DNA.RNA > S-DNA.S-DNA。无论取代是在杂交体还是DNA双链体中,单链的硫代磷酸化都会使熔解温度降低7.8±0.6摄氏度。热力学参数是通过对热熔解曲线的多态分析获得的。有趣的是,硫代磷酸酯取代的去稳定作用似乎源于形成DNA.DNA双链体时熵的差异,而在DNA.RNA杂交体中的去稳定作用似乎源于焓的差异。