Wu Peng, Kawamoto Yasunori, Hara Hideyuki, Sugimoto Naoki
High Technology Research Center, Konan University, 8-9-1 Okamoto, Higashinada-ku, Kobe 658-8501, Japan.
J Inorg Biochem. 2002 Jul 25;91(1):277-85. doi: 10.1016/s0162-0134(02)00444-0.
The contribution of divalent cations and cytosine protonation to conformation and stability of duplex and triplex formation were intensively investigated and characterized by ultraviolet (UV), circular dichroism (CD), differential scanning calorimetry (DSC), and electrophoresis mobility shift assay (EMSA). CD spectra showed that the divalent cations investigated would not significantly distort nucleotide geometry, while UV and DSC melting experiments revealed that the cation binding abilities to duplexes and triplexes were clearly dependent on the types of cations under near physiological conditions. The calorimetric enthalpies were generally underestimated relative to the corresponding van't Hoff enthalpies for Hoogsteen and Watson-Crick transitions, but free energy changes derived from the DSC measurements were in good agreement with those derived from the UV measurements. The adjacent placing of the C(+) x G.C triplets in triplexes lowered the stabilities of not only Hoogsteen base-pairing but also Watson-Crick base-pairing. The protonation contribution of the given cytosine residues might depend on the local and global structure of the protonated cytosine complex. A rigid structural targeted-strand would favor the protonation of cytosine residues. The apparent pK(a) values for parallel duplex and triplex investigated were determined to be 6.4 and 7.6, respectively, which are considerably heightened by 2.1 and 3.3 pH unit as compared to the intrinsic pK(a) value of the free cytosine residues.
通过紫外(UV)、圆二色性(CD)、差示扫描量热法(DSC)和电泳迁移率变动分析(EMSA),对二价阳离子和胞嘧啶质子化对双链体和三链体形成的构象和稳定性的贡献进行了深入研究和表征。CD光谱表明,所研究的二价阳离子不会显著扭曲核苷酸几何结构,而UV和DSC熔解实验表明,在近生理条件下,阳离子与双链体和三链体的结合能力明显取决于阳离子的类型。相对于相应的霍夫施塔特和沃森-克里克转变的范特霍夫焓,量热焓通常被低估,但DSC测量得出的自由能变化与UV测量得出的结果吻合良好。三链体中C(+)xG.C三联体的相邻排列不仅降低了霍夫施塔特碱基配对的稳定性,也降低了沃森-克里克碱基配对的稳定性。给定胞嘧啶残基的质子化贡献可能取决于质子化胞嘧啶复合物的局部和整体结构。刚性结构的靶链有利于胞嘧啶残基的质子化。所研究的平行双链体和三链体的表观pK(a)值分别确定为6.4和7.6,与游离胞嘧啶残基的固有pK(a)值相比,分别显著提高了2.1和3.3个pH单位。