Li Lei, Cen Jie, Pan Wenhao, Zhang Yuben, Leng Xuanxi, Tan Zhengqi, Yin Hao, Liu Shiyong
Hefei National Laboratory for Physical Sciences at the Microscale, Department of Polymer Science and Engineering, School of Chemistry and Materials Science, University of Science and Technology of China, Hefei, Anhui 230026, China.
Mass Spectrometry Lab, Hefei National Laboratory for Physical Sciences at the Microscale, University of Science and Technology of China, Hefei, Anhui 230026, China.
Research (Wash D C). 2021 Nov 17;2021:9826046. doi: 10.34133/2021/9826046. eCollection 2021.
Controlled polypeptide synthesis via -amino acid -carboxylic anhydride (NCA) polymerization using conventional primary amine initiators encounters two major obstacles: (i) normal amine mechanism (NAM) and activated monomer mechanism (AMM) coexist due to amine basicity and nucleophilicity and (ii) NCA is notoriously sensitive towards moisture and heat and unstable upon storage. We serendipitously discover that -phenoxycarbonyl-functionalized -amino acid (NPCA), a latent NCA precursor, could be polymerized solely based on NAM with high initiating efficiency by using primary amine hydrochloride as an initiator. The polymerization affords well-defined polypeptides with narrow polydispersity and high-fidelity terminal functionalities, as revealed by the clean set of MALDI-TOF MS patterns. We further demonstrate successful syntheses of random and block copolypeptides, even under open-vessel conditions. Overall, the integration of moisture-insensitive and air-tolerant NPCA precursors with stable primary amine hydrochloride initiators represents a general strategy for controlled synthesis of high-fidelity polypeptides with sophisticated functions.
使用传统伯胺引发剂通过α-氨基酸-N-羧酸酐(NCA)聚合进行可控多肽合成面临两个主要障碍:(i)由于胺的碱性和亲核性,正常胺机理(NAM)和活化单体机理(AMM)共存;(ii)NCA对水分和热非常敏感,储存时不稳定。我们意外地发现,一种潜在的NCA前体——α-苯氧羰基官能化的α-氨基酸(NPCA),可以通过使用伯胺盐酸盐作为引发剂,仅基于NAM以高引发效率进行聚合。如清晰的一组基质辅助激光解吸电离飞行时间质谱(MALDI-TOF MS)图谱所示,该聚合反应可得到具有窄多分散性和高保真末端官能团的明确多肽。我们进一步证明,即使在开放容器条件下,也能成功合成无规和嵌段共多肽。总体而言,将对水分不敏感且耐空气的NPCA前体与稳定的伯胺盐酸盐引发剂相结合,是一种用于可控合成具有复杂功能的高保真多肽的通用策略。
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