Kanaori K, Shibayama N, Gohda K, Tajima K, Makino K
Department of Applied Biology, Kyoto Institute of Technology, Matsugasaki, Sakyo-ku, Kyoto 606-8585, Japan.
Nucleic Acids Res. 2001 Feb 1;29(3):831-40. doi: 10.1093/nar/29.3.831.
By detailed NMR analysis of a human telomere repeating unit, d(CCCTAA), we have found that three distinct tetramers, each of which consists of four symmetric single-strands, slowly exchange in a slightly acidic solution. Our new finding is a novel i-motif topology (T:-form) where T4 is intercalated between C1 and C2 of the other duplex. The other two tetramers have a topology where C1 is intercalated between C2 and C3 of the other parallel duplex, resulting in the non-stacking T4 residues (R-form), and a topology where C1 is stacked between C3 and T4 of the other duplex (S:-form). From the NMR denaturation profile, the R-form is the most stable of the three structures in the temperature range of 15-50 degrees C, the S:-form the second and the T:-form the least stable. The thermodynamic parameters indicate that the T-form is the most enthalpically driven and entropically opposed, and its population is increased with decreasing temperature. The T-form structure determined by restrained molecular dynamics calculation suggests that inter-strand van der Waals contacts in the narrow grooves should contribute to the enthalpic stabilization of the T-form.
通过对人类端粒重复单元d(CCCTAA)进行详细的核磁共振分析,我们发现三种不同的四聚体,每种四聚体均由四条对称的单链组成,它们在微酸性溶液中会缓慢交换。我们的新发现是一种新型的i-基序拓扑结构(T型),其中T4插入到另一条双链体的C1和C2之间。另外两种四聚体具有这样的拓扑结构:一种是C1插入到另一条平行双链体的C2和C3之间,导致T4残基不堆积(R型);另一种是C1堆积在另一条双链体的C3和T4之间(S型)。根据核磁共振变性图谱,在15至50摄氏度的温度范围内,R型是三种结构中最稳定的,S型次之,T型最不稳定。热力学参数表明,T型受焓驱动最大且受熵阻碍最大,其数量会随着温度降低而增加。通过受限分子动力学计算确定的T型结构表明,窄沟中的链间范德华接触有助于T型的焓稳定。