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Asymmetric Catalysis Special Feature Part II: Stereoselective terminal functionalization of small peptides for catalytic asymmetric synthesis of unnatural peptides

机译:不对称催化特征第二部分:小肽的立体选择性末端官能化用于非天然肽的催化不对称合成

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摘要

The asymmetric phase-transfer catalytic alkylation of peptides has been achieved by the use of designed C2-symmetric chiral quaternary ammonium bromide 1 as catalyst. Excellent stereoselectivities were uniformly observed in the alkylation with a variety of alkyl halides and the efficiency of the transmission of stereochemical information was not affected by the side-chain structure of the preexisting amino acid residues. This method also enables an asymmetric construction of noncoded α,α-dialkyl-α-amino acid residues at the peptide terminal. Since this chirality can be efficiently transferred to the adjacent amino acid moiety, our approach provides a general procedure not only for the highly stereoselective terminal functionalization of peptides but also for the sequential asymmetric construction of unnatural oligopeptides, which should play a vital role in the peptide-based drug discovery process.
机译:肽的不对称相转移催化烷基化已通过使用设计的C2对称手性季铵溴化铵1作为催化剂来实现。在各种烷基卤的烷基化反应中均观察到优异的立体选择性,并且立体化学信息的传递效率不受现有氨基酸残基侧链结构的影响。该方法还使得能够在肽末端非对称地构建非编码的α,α-二烷基-α-氨基酸残基。由于这种手性可以有效地转移到相邻的氨基酸部分,因此我们的方法不仅为肽的高度立体选择性末端官能化提供了通用程序,而且为非天然寡肽的顺序不对称构建提供了一般程序,该过程应在肽中起重要作用基于药物的发现过程。

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