首页> 外文期刊>The journal of peptide research: official journal of the American Peptide Society >Synthesis of N-carboxyalkyl and N-aminoalkyl functionalized dipeptide building units for the assembly of backbone cyclic peptides.
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Synthesis of N-carboxyalkyl and N-aminoalkyl functionalized dipeptide building units for the assembly of backbone cyclic peptides.

机译:N-羧基烷基和N-氨基烷基官能化的二肽构建单元的合成,用于组装主链环肽。

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摘要

To improve the assembly of backbone cyclic peptides, N-functionalized dipeptide building units were synthesized. The corresponding N-aminoalkyl or N-carboxyalkyl amino acids were formed by alkylation or reductive alkylation of amino acid benzyl or tert-butyl esters. In the case of N-aminoalkyl amino acid derivatives the aldehydes for reductive alkylation were obtained from N,O-dimethyl hydroxamates of N-protected amino acids by reduction with LiAlH4. N-carboxymethyl amino acids were synthesized by alkylation using bromoacetic acid ester and the N-carboxyethyl amino acids via reductive alkylation using aldehydes derived from formyl Meldrums acid. Removal of the carboxy protecting group leads to free N-alkyl amino acids of very low solubility in organic solvents, allowing efficient purification by extraction of the crude product. These N-alkyl amino acids were converted to their tetramethylsilane-esters by silylation with N,O-bis-(trimethylsilyl)acetamide and could thus be used for the coupling with Fmoc-protected amino acid chlorides or fluorides. To avoid racemization the tert-butyl esters of N-alkyl amino acids were coupled with the Fmoc-amino acid halides in the presence of the weak base collidine. Both the N-aminoalkyl and N-carboxyalkyl functionalized dipeptide building units could be obtained in good yield and purity. For peptide assembly on the solid support, the allyl type protection of the branching moiety turned out to be most suitable. The Fmoc-protected N-functionalized dipeptide units can be used like any amino acid derivative under the standard conditions for Fmoc-solid phase synthesis.
机译:为了改善主链环状肽的组装,合成了N-官能化的二肽构建单元。通过氨基酸苄基或叔丁基酯的烷基化或还原烷基化形成相应的N-氨基烷基或N-羧基烷基氨基酸。在N-氨基烷基氨基酸衍生物的情况下,通过用LiAlH 4还原从N-保护的氨基酸的N,O-二甲基异羟肟酸酯获得用于还原性烷基化的醛。 N-羧甲基氨基酸是通过使用溴乙酸酯进行烷基化而合成的,而N-羧乙基氨基酸是通过使用衍生自甲酰基Meldrums酸的醛的还原烷基化来进行合成的。羧基保护基的除去导致在有机溶剂中的溶解度非常低的游离N-烷基氨基酸,从而允许通过提取粗产物而有效地纯化。这些N-烷基氨基酸通过与N,O-双-(三甲基甲硅烷基)乙酰胺的甲硅烷基化反应转化为它们的四甲基硅烷酯,因此可用于与Fmoc保护的氨基酸氯化物或氟化物偶联。为了避免外消旋作用,在弱碱可力丁的存在下,将N-烷基氨基酸的叔丁酯与Fmoc-氨基酸卤化物偶合。 N-氨基烷基和N-羧基烷基官能化的二肽结构单元均可以良好的产率和纯度获得。对于在固相支持体上的肽组装,分支部分的烯丙基型保护被证明是最合适的。在Fmoc-固相合成的标准条件下,Fmoc保护的N-官能化二肽单元可以像任何氨基酸衍生物一样使用。

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