Kandimalla E R, Manning A N, Venkataraman G, Sasisekharan V, Agrawal S
Hybridon, Inc., Worcester, MA 01605, USA.
Nucleic Acids Res. 1995 Nov 11;23(21):4510-7. doi: 10.1093/nar/23.21.4510.
Foldback triplex-forming oligonucleotides (FTFOs) that contain an abasic linker, [2-(4-aminobutyr-1-yl)-1,3-propanediol] (APD linker), in the Hoogsteen domain against pyrimidine bases of a C:G and a T:A base pair were studied for their relative stability and sequence specificity of triplex formation. In general, the APD linker has less destabilizing effect against a C:G base pair than a T:A base pair. Incorporation of three APD linker moieties resulted in decreased binding to the target, which was comparable to results observed with three imperfectly matched natural base triplets. The APD linker incorporation did not result in the loss of sequence specificity of FTFOs, unlike in the case of normal triplex-forming oligonucleotides (TFOs). The introduction of a positively charged abasic linker, however, resulted in decreased stability of the triplex, because of loss of hydrogen bonding and stacking interactions in the major groove. The results of a molecular modeling study show that APD linker can be readily incorporated without any change in the conformation of the natural sugar-phosphate backbone conserving overall triple helix geometry. Further, the modeling study suggests a hydrogen bond formation between the amino group of linker and N4 of cytosine mediated by a solvent molecule (water) in the floor of the base triplet in addition to a contribution from the positive charge on the APD linker amino group. Either a direct or water-mediated hydrogen bond between the amino group of the APD linker and the O4 of thymine is unlikely when the linker is placed against a T:A base pair.
研究了在Hoogsteen结构域中针对C:G和T:A碱基对的嘧啶碱基含有无碱基连接子2-(4-氨基丁酰-1-基)-1,3-丙二醇的回折三链形成寡核苷酸(FTFO)的三链形成相对稳定性和序列特异性。一般来说,APD连接子对C:G碱基对比对T:A碱基对的去稳定作用更小。引入三个APD连接子部分导致与靶标的结合减少,这与用三个不完全匹配的天然碱基三联体观察到的结果相当。与正常三链形成寡核苷酸(TFO)的情况不同,APD连接子的引入并未导致FTFO序列特异性的丧失。然而,由于在大沟中氢键和堆积相互作用的丧失,引入带正电荷的无碱基连接子导致三链体稳定性降低。分子模拟研究结果表明,APD连接子可以很容易地引入,而天然糖-磷酸骨架的构象没有任何变化,从而保留了整体三螺旋几何结构。此外,模拟研究表明,除了APD连接子氨基上的正电荷的贡献外,连接子氨基与碱基三联体底部的胞嘧啶N4之间通过溶剂分子(水)介导形成氢键。当连接子与T:A碱基对相对时,APD连接子氨基与胸腺嘧啶O4之间不太可能形成直接或水介导的氢键。