Li Minfeng, Yamato Kazuhiro, Ferguson Joseph S, Gong Bing
Department of Chemistry, University at Buffalo, The State University of New York, Buffalo, NY 14260, USA.
J Am Chem Soc. 2006 Oct 4;128(39):12628-9. doi: 10.1021/ja064515n.
Oligoamide strands that associate in a sequence-specific fashion into hydrogen-bonded duplexes in nonpolar solvents were converted into disulfide cross-linked duplexes in aqueous media. Thus, by incorporating trityl-protected thiol groups, which allows the reversible formation of disulfide bonds, into the oligoamide strands, only duplexes consisting of complementary hydrogen-bonding sequences were formed in aqueous solution as well as in methanol. The sequence-specific cross-linking of oligoamide strands was confirmed by MALDI-TOF, reverse-phase HPLC, and by isolating a cross-linked duplex. This study demonstrates that the sequence-specificity characteristic of multiply hydrogen-bonded systems can be extended into competitive media through the interplay of H-bonding and reversible covalent interactions, based on which a new class of molecular associating and ligating units that are compatible with both polar and nonpolar environments can be conveniently obtained.
在非极性溶剂中以序列特异性方式缔合形成氢键双链体的寡酰胺链,在水性介质中被转化为二硫键交联的双链体。因此,通过将允许二硫键可逆形成的三苯甲基保护的硫醇基团引入寡酰胺链中,在水溶液以及甲醇中仅形成由互补氢键序列组成的双链体。寡酰胺链的序列特异性交联通过基质辅助激光解吸电离飞行时间质谱(MALDI-TOF)、反相高效液相色谱(HPLC)以及分离交联双链体得以证实。本研究表明,基于氢键和可逆共价相互作用的相互作用,多重氢键体系的序列特异性特征可以扩展到竞争性介质中,据此可以方便地获得一类与极性和非极性环境均兼容的新型分子缔合和连接单元。