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A new strategy for synthesis of branched cyclic peptide by Asn side-chain hydrazide ligation

A new strategy for synthesis of branched cyclic peptide by Asn side-chain hydrazide ligation
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摘要 Here, we report a new strategy for rapid synthesis of branched peptide by side-chain hydrazide ligation at Asn. The hydrazide was converted to thioester at Asn side chain by Na NO2 and thiol reagent, and sequential ligation with an N-terminus Cys-peptide efficiently afforded the branched peptide. A branched cyclic peptide was successfully synthesized by side-chain ligation with a two-Cys-peptide and formation of a disulfide bond. This approach provides a new way for expeditious synthesis of branched peptides and facilitates the design of neopeptides as functional bio-mimics. Here, we report a new strategy for rapid synthesis of branched peptide by side-chain hydrazide ligation at Asn. The hydrazide was converted to thioester at Asn side chain by Na NO2 and thiol reagent, and sequential ligation with an N-terminus Cys-peptide efficiently afforded the branched peptide. A branched cyclic peptide was successfully synthesized by side-chain ligation with a two-Cys-peptide and formation of a disulfide bond. This approach provides a new way for expeditious synthesis of branched peptides and facilitates the design of neopeptides as functional bio-mimics.
出处 《Chinese Chemical Letters》 SCIE CAS CSCD 2015年第8期946-950,共5页 中国化学快报(英文版)
基金 supported by the National Natural Science Foundation of China(NNSFC,No.21372238) National 1000-Young-Talent Program of China Shanghai Pujiang Talent Program(No.13PJ1410200)
关键词 ligation branched sequential reagent disulfide thiol Fmoc retention azide simultaneous ligation branched sequential reagent disulfide thiol Fmoc retention azide simultaneous
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