甘氨酸
肌氨酸
共聚物
质子化
化学
氨基酸
高分子化学
胺气处理
组合化学
有机化学
聚合物
生物化学
离子
作者
Jianping Wang,Peng Zhou,Ting Shen,Shumao Xu,Tianwen Bai,Jun Ling
出处
期刊:ACS Macro Letters
[American Chemical Society]
日期:2023-10-19
卷期号:12 (11): 1466-1471
被引量:1
标识
DOI:10.1021/acsmacrolett.3c00491
摘要
Glycine-rich proteins (GRPs) containing a high content of glycine residues (>30%) possess unique structural stability. However, the controllable synthesis of glycine-rich poly(amino acid)s (PAAs) to mimic GRPs has not been realized yet due to the poor solubility of polyglycine segments. We developed a novel method to synthesize glycine-rich PAAs via the controlled ring-opening copolymerization of glycine-N-thiocarboxyanhydrides (Gly-NTA) with sarcosine-N-carboxyanhydride and ε-Cbz-l-lysine-N-carboxyanhydride. The random copolymerization is evidenced by a kinetic study that shows that the propagation rate constant of Gly-NTA is close to those of comonomers. The copolymers exhibit predictable molecular weights between 4.5 and 24.6 kg/mol and tunable glycine incorporation, varying from 10.3 to 59.2%. Poly(Gly-r-Sar) samples with various glycine contents form nanoparticles or a hydrogel in water. Remarkably, the β-sheet folding of poly(Gly-r-Lys) remains intact in a neutral environment where the amine groups are protonated. Overall, the strategy paves the way to engineer glycine-rich PAAs and thereby expands their applications.
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