Szczypiński Filip T, Hunter Christopher A
Department of Chemistry , University of Cambridge , Lensfield Road , Cambridge CB2 1EW , UK . Email:
Chem Sci. 2019 Jan 11;10(8):2444-2451. doi: 10.1039/c8sc04896g. eCollection 2019 Feb 28.
Competition from intramolecular folding is a major challenge in the design of synthetic oligomers that form intermolecular duplexes in a sequence-selective manner. One strategy is to use very rigid backbones that prevent folding, but this design can prejudice duplex formation if the geometry is not exactly right. The alternative approach found in nucleic acids is to use bases (or recognition units) that have different dimensions. A long-short base-pairing scheme makes folding geometrically difficult and is compatible with the flexible backbones that are required to guarantee duplex formation. A monomer building block equipped with a long hydrogen bond donor (phenol, ) recognition unit and a monomer building block equipped with a short hydrogen bond acceptor (phosphine oxide, ) recognition unit were prepared with differentially protected alcohol and carboxylic acid groups. These compounds were used to synthesise the homo and hetero-sequence 2-mers , and . F and P NMR experiments were used to characterize the assembly properties of these compounds in toluene solution. and form a stable doubly-hydrogen-bonded duplex with an effective molarity of 20 mM for formation of the second intramolecular hydrogen bond. forms a duplex of similar stability. There is no evidence of intramolecular folding in the monomeric state of this compound, which shows that the long-short base-pairing scheme is effective. The ester coupling chemistry used here is an attractive method for the synthesis of long oligomers, and the properties of the 2-mers indicate that this molecular architecture should give longer mixed sequence oligomers that show high fidelity sequence-selective duplex formation.
来自分子内折叠的竞争是设计以序列选择性方式形成分子间双链体的合成低聚物时面临的主要挑战。一种策略是使用非常刚性的主链来防止折叠,但如果几何形状不完全正确,这种设计可能会不利于双链体的形成。在核酸中发现的另一种方法是使用具有不同尺寸的碱基(或识别单元)。长-短碱基配对方案使折叠在几何上变得困难,并且与保证双链体形成所需的柔性主链兼容。制备了配备有长氢键供体(苯酚)识别单元的单体结构单元和配备有短氢键受体(氧化膦)识别单元的单体结构单元,它们带有不同保护的醇基和羧基。这些化合物用于合成同序列和异序列的二聚体 、 和 。利用氟和磷核磁共振实验来表征这些化合物在甲苯溶液中的组装性质。 和 形成了一种稳定的双氢键双链体,形成第二个分子内氢键的有效摩尔浓度为20 mM。 形成了具有相似稳定性的双链体。在该化合物的单体状态下没有分子内折叠的证据,这表明长-短碱基配对方案是有效的。这里使用的酯偶联化学是合成长低聚物的一种有吸引力的方法,并且二聚体的性质表明这种分子结构应该能够得到显示出高保真序列选择性双链体形成的更长的混合序列低聚物。