Gondeau C, Maurizot J C, Durand M
Centre de Biophysique Moléculaire, Laboratoire affilié à l'Université d'Orléans, Rue Charles Sadron,45071 Orléans Cedex 2, France.
Nucleic Acids Res. 1998 Nov 1;26(21):4996-5003. doi: 10.1093/nar/26.21.4996.
We have used circular dichroism and UV absorption spectroscopy to characterize the formation and melting behaviour of an intramolecular DNA triple helix containing parallel TA:T and GG:C triplets. Our approach to induce and to stabilize a parallel triplex involves the oligonucleotide 5'-d(G4A4G4[T4]C4T4C4-[T4]G4T4G4) ([T4] represents a stretch of four thymine residues). In a 10 mM sodium cacodylate, 0.2 mM disodium EDTA (pH 7) buffer, we have shown the following significant results. (i) While in the absence of MgCl2 this oligonucleotide adopts an intramolecular hairpin duplex structure prolonged by the single strand extremity 5'-d([T4]G4T4G4), the presence of millimolar concentrations of MgCl2generates an intramolecular triplex (via double hairpin formation). (ii) In contrast to the antiparallel triplex formed by the oligonucleotide 5'-d(G4T4G4[T4]G4A4G4[T4]C4T4C4), the parallel triplex melts in a biphasic manner (a triplex to duplex transition followed by a duplex to coil transition) and is less stable than the antiparallel one. The enthalpy change associated with triplex formation (-37 kcal/mol) is approximately half that of duplex formation (-81 kcal/mol). (iii) The parallel triple helix is disrupted by increasing the concentration of KCl(>10 mM), whereas, under the same conditions, the antiparallel triplex remains stable. (iv) Netropsin, a natural DNA minor groove-binding ligand, binds to the central site A4/T4of the duplex or triplex in an equimolar stoichiometry. Its association constant K is smaller for the parallel triplex ( approximately 1 x 10(7) M-1) than for the antiparallel one ( approximately 1 x 10(8) M-1). In contrast to the antiparallel structure, netropsin binding has no apparent effect on thermal stability of the parallel triple helix.
我们利用圆二色性和紫外吸收光谱来表征包含平行TA:T和GG:C三联体的分子内DNA三链螺旋的形成及解链行为。我们诱导并稳定平行三链体的方法涉及寡核苷酸5'-d(G4A4G4[T4]C4T4C4-[T4]G4T4G4)([T4]表示一段四个胸腺嘧啶残基的序列)。在10 mM二甲胂酸钠、0.2 mM乙二胺四乙酸二钠(pH 7)缓冲液中,我们得到了以下重要结果。(i) 在不存在MgCl2的情况下,该寡核苷酸形成分子内发夹双链结构,由单链末端5'-d([T4]G4T4G4)延长,而毫摩尔浓度的MgCl2的存在会生成分子内三链体(通过双发夹形成)。(ii) 与寡核苷酸5'-d(G4T4G4[T4]G4A4G4[T4]C4T4C4)形成的反平行三链体不同,平行三链体以双相方式解链(三链体到双链体转变,随后是双链体到单链卷曲转变),且比反平行三链体稳定性更低。与三链体形成相关的焓变(-37 kcal/mol)约为双链体形成焓变(-81 kcal/mol)的一半。(iii) 增加KCl浓度(>10 mM)会破坏平行三链螺旋,而在相同条件下,反平行三链体保持稳定。(iv) 纺锤菌素是一种天然的DNA小沟结合配体,以等摩尔化学计量比结合到双链体或三链体的中央位点A4/T4。其结合常数K对于平行三链体(约1×10(7) M-1)比反平行三链体(约1×10(8) M-1)小。与反平行结构不同,纺锤菌素的结合对平行三链螺旋的热稳定性没有明显影响。