Department of Chemistry B6c, University of Liège, Liège, Belgium.
Nucleic Acids Res. 2010 Aug;38(15):5217-25. doi: 10.1093/nar/gkq208. Epub 2010 Apr 16.
Electrospray mass spectrometry was used to investigate the mechanism of tetramolecular G-quadruplex formation by the DNA oligonucleotide dTG(5)T, in ammonium acetate. The intermediates and products were separated according to their mass (number of strands and inner cations) and quantified. The study of the temporal evolution of each species allows us to propose the following formation mechanism. (i) Monomers, dimers and trimers are present at equilibrium already in the absence of ammonium acetate. (ii) The addition of cations promotes the formation of tetramers and pentamers that incorporate ammonium ions and therefore presumably have stacked guanine quartets in their structure. (iii) The pentamers eventually disappear and tetramers become predominant. However, these tetramers do not have their four strands perfectly aligned to give five G-quartets: the structures contain one ammonium ion too few, and ion mobility spectrometry shows that their conformation is more extended. (iv) At 4 degrees C, the rearrangement of the kinetically trapped tetramers with presumably slipped strand(s) into the perfect G-quadruplex structure is extremely slow (not complete after 4 months). We also show that the addition of methanol to the monomer solution significantly accelerates the cation-induced G-quadruplex assembly.
电喷雾质谱法被用于研究 DNA 寡核苷酸 dTG(5)T 在乙酸铵中形成四聚体 G-四链体的机制。根据其质量(链数和内部阳离子数)和定量,将中间体和产物进行分离。对每种物质的时间演化的研究使我们能够提出以下形成机制。(i)在不存在乙酸铵的情况下,单体、二聚体和三聚体已经处于平衡状态。(ii)阳离子的加入促进了四聚体和五聚体的形成,这些聚体包含铵离子,因此推测其结构中具有堆积的鸟嘌呤四联体。(iii)五聚体最终消失,四聚体成为主要产物。然而,这些四聚体并没有将它们的四条链完美地排列成五个 G-四联体:结构中缺少一个铵离子,离子迁移谱表明它们的构象更加伸展。(iv)在 4°C 下,具有推测滑移链的动力学捕获的四聚体的重排进入完美的 G-四链体结构非常缓慢(4 个月后仍未完全)。我们还表明,向单体溶液中添加甲醇可显著加速阳离子诱导的 G-四链体组装。