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Sequence- and Chain-Length-Specific Complementary Double-Helix Formation

机译:序列和链长特定的互补双螺旋结构

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The artificial sequential strands consisting of two, three, or four m-terphenyl groups joined by diacetylene linkers with complementary binding sites, either the chiral amidine (A) or achirai carboxyl (C) group, were synthesized in a stepwise manner. Using circular dichroism and ~1H NMR spectroscopies along with liquid chromatography, we showed that, when three dimeric molecular strands (AA, CC, and AC) or six trimeric molecular strands (AAA, CCC, AAC, CCA, ACA, and CAC) were mixed in solution, the complementary strands were sequence-specifically hybridized to form one-handed double-helical dimers AA-CC and (AC)_2 or trimers AAA·CCC, AAC·CCA, and ACA · CAC, respectively, through complementary amidinium-carboxylate salt bridges. Upon the addition of CCA to a mixture of AAA, AAC, and ACA, the AAC·CCA double helix was selectively formed and then isolated from the mixture by chromatography. Moreover, the homo-oligomer mixtures of amidine or carboxylic acid from the monomers to tetramers (A, AA, AAAA, C, CC, and CCCC) assembled with a precise chain length specificity to form A-C, AA·CC, and AAAA·CCCC, which were separated by chromatography.
机译:以逐步方式合成了由两个,三个或四个间-三联苯基基团组成的人工顺序链,这些联结基团由具有互补结合位点的二乙炔连接基连接,该手性binding基为手性am(A)或achirai羧基(C)。使用圆二色性和〜1H NMR光谱结合液相色谱,我们发现,当三个三聚体分子链(AA,CC和AC)或六个三聚体分子链(AAA,CCC,AAC,CCA,ACA和CAC)为在溶液中混合后,互补链通过互补的idi基序列特异性杂交形成单手双螺旋二聚体AA-CC和(AC)_2或三聚体AAA·CCC,AAC·CCA和ACA·CAC。羧酸盐桥。将CCA添加到AAA,AAC和ACA的混合物中后,选择性地形成AAC·CCA双螺旋,然后通过色谱法从混合物中分离。此外,am或羧酸从单体到四聚体(A,AA,AAAA,C,CC和CCCC)的均聚物混合物以精确的链长特异性组装成AC,AA·CC和AAAA·CCCC ,用色谱法分离。

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