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3-Substituted Prolines: From Synthesis to Structural Applications from Peptides to Foldamers

机译:3位取代的脯氨酸:从合成到结构应用从肽到折叠剂

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摘要

Among the twenty natural proteinogenic amino acids, proline is unique as its secondary amine forms a tertiary amide when incorporated into biopolymers, thus preventing hydrogen bond formation. Despite the lack of hydrogen bonds and thanks to conformational restriction of flexibility linked to the pyrrolidine ring, proline is able to stabilize peptide secondary structures such as β-turns or polyproline helices. These unique conformational properties have aroused a great interest in the development of proline analogues. Among them, proline chimeras are tools combining the proline restriction of flexibility together with the information brought by natural amino acids side chains. This review will focus on the chemical syntheses of 3-substituted proline chimeras of potential use for peptide syntheses and as potential use as tools for SAR studies of biologically active peptides and the development of secondary structure mimetics. Their influence on peptide structure will be briefly described.
机译:在20种天然蛋白氨基酸中,脯氨酸是独特的,因为它的仲胺在掺入生物聚合物时会形成叔酰胺,从而防止了氢键的形成。尽管缺乏氢键并且由于与吡咯烷环连接的柔性的构象限制,脯氨酸仍能够稳定肽二级结构,例如β-转角或聚脯氨酸螺旋。这些独特的构象性质引起了脯氨酸类似物的发展的极大兴趣。其中,脯氨酸嵌合体是结合脯氨酸柔韧性限制和天然氨基酸侧链带来的信息的工具。这篇综述将侧重于可能用于肽合成的3-取代的脯氨酸嵌合体的化学合成,以及作为用于生物活性肽的SAR研究和二级结构模拟物开发的工具的潜在用途。将简要描述它们对肽结构的影响。

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