4.8 Article

Construction of Thioamide Peptide via Sulfur-Involved Amino Acids/Amino Aldehydes Coupling

Journal

ORGANIC LETTERS
Volume 23, Issue 22, Pages 8862-8866

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.orglett.1c03370

Keywords

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Funding

  1. NSFC [22125103, 21971065]
  2. STCSM [20XD1421500, 20JC1416800]
  3. Innovative Research Team of High-Level Local Universities in Shanghai [SSMU-ZLCX20180501]

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A sulfur-involved ligation for thioamide quasi-peptides was developed via coupling of amino acids and amino aldehydes, with chelation of copper with imines for chiral activation and fixation being key to the transformation. Linear polysulfur was used to decrease the alkalinity of single sulfur anions, preventing racemization caused by interaction with sodium sulfide, resulting in successful synthesis of dipeptides, tripeptides, tetrapeptides, and drug-amino acid linkages.
A sulfur-involved ligation for thioamide quasi-peptides was developed via amino acids and amino aldehydes coupling. The key to the transformation was the chelation of copper with imines for chiral activation and fixation. In this environment, linear polysulfur decreased the alkalinity of single sulfur anions to prevent racemization caused by the interaction between sulfur and sodium sulfide. Dipeptides, tripeptides, tetrapeptides, and the linkage between the drug and amino acids were successfully obtained.

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