Instituto de Química Física "Rocasolano", CSIC, Serrano 119, 28006Madrid, Spain.
Institute for Research in Biomedicine (IRB Barcelona), The Barcelona Institute of Science and Technology (BIST), 08028Barcelona, Spain.
J Am Chem Soc. 2023 Feb 15;145(6):3696-3705. doi: 10.1021/jacs.2c13043. Epub 2023 Feb 6.
We study here a DNA oligonucleotide having the ability to form two different i-motif structures whose relative stability depends on pH and temperature. The major species at neutral pH is stabilized by two C:C base pairs capped by two minor groove G:C:G:C tetrads. The high pH and thermal stability of this structure are mainly due to the favorable effect of the minor groove tetrads on their adjacent positively charged C:C base pairs. At pH 5, we observe a more elongated i-motif structure consisting of four C:C base pairs capped by two G:T:G:T tetrads. Molecular dynamics calculations show that the conformational transition between the two structures is driven by the protonation state of key cytosines. In spite of large conformational differences, the transition between the acidic and neutral structures can occur without unfolding of the i-motif. These results represent the first case of a conformational switch between two different i-motif structures and illustrate the dramatic pH-dependent plasticity of this fascinating DNA motif.
我们在这里研究一种具有形成两种不同 i-motif 结构能力的 DNA 寡核苷酸,其相对稳定性取决于 pH 值和温度。在中性 pH 值下,主要物种由两个 C:C 碱基对稳定,其两端由两个小沟 G:C:G:C 四联体封闭。该结构在高 pH 值和热稳定性主要归因于小沟四联体对其相邻带正电荷的 C:C 碱基对的有利影响。在 pH 值为 5 时,我们观察到一种更长的 i-motif 结构,由两个 G:T:G:T 四联体封闭的四个 C:C 碱基对组成。分子动力学计算表明,两种结构之间的构象转变是由关键胞嘧啶的质子化状态驱动的。尽管构象差异很大,但酸性和中性结构之间的转变可以在不展开 i-motif 的情况下发生。这些结果代表了两种不同 i-motif 结构之间的构象开关的第一个案例,并说明了这种迷人的 DNA 基序对 pH 值的显著依赖性。