化学
硫醚
单体
水溶液
聚合
高分子化学
侧链
聚合物
烯类反应
半胱氨酸
螺旋(腹足类)
氧化还原
产量(工程)
烯烃
有机化学
生态学
材料科学
蜗牛
冶金
催化作用
生物
酶
作者
Jessica R. Kramer,Timothy J. Deming
摘要
Conformation-switchable glycopolypeptides were prepared by the living polymerization of glycosylated L-cysteine-N-carboxyanhydride (glyco-C NCA) monomers. These new monomers were prepared in high yield by coupling of alkene-terminated C-linked glycosides of D-galactose or D-glucose to L-cysteine using thiol-ene "click" chemistry, followed by their conversion to the corresponding glyco-C NCAs. The resulting glycopolypeptides were found to be water-soluble and α-helical in solution. Aqueous oxidation of the side-chain thioether linkages in these polymers to sulfone groups resulted in disruption of the α-helical conformations without loss of water solubility. The ability to switch chain conformation and remain water-soluble is unprecedented in synthetic polymers, and allows new capabilities to control presentation of sugar functionality in subtly different contexts.
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