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Synthesis and application of carbohydrate -templated amino acids and use as peptidomimetics.

机译:碳水化合物为模板的氨基酸的合成和应用,并用作拟肽。

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摘要

Carbohydrate-templated amino acids (CTAAs) have found their wide application in the synthesis of peptidomimetics and glycomimetics. Herein, we describe the design, synthesis and conformational properties of three new types of CTAAs: spirocyclic glucose-templated 3(S)-hydroxy- L-proline analogues (Glc(3S)-Hyp), glucose-templated D- and L-lysine analogues (GlcTk, GlcTK) and glucose-templated L-proline lysine hybrids (GlcTProLysHs). In order to explore the use of these building blocks in peptide chemistry all three CTAAs were incorporated into peptides or peptide mimics and the thermodynamic, kinetic and beta-turn-inducing properties were studied. These studies have resulted in the following observations and conclusions: (1) The studies of peptide mimics Ac-Glc(3S)-Hyp-OMe, Ac-Glc(3S)-Hyp-NHMe and tetrapeptides Ac-Leu-D-Phe-Glc(3 S)-Hyp-Val-NMe2 demonstrate that (5'R)-Glc(3 S)-Hyp increases the prolyl amide cis rotamer population with accelerated cis/trans isomerization kinetics in water and induces a type VIa beta-turn in the tetrapeptide when compared to unmodified reference peptides Ac-Pro-OMe, Ac-Pro-NHMe, Ac-(3S)-Hyp-OMe and Ac-(3S)-Hyp-NHMe. Whereas the diastereomer (5' S)-GlcTPro prefers the prolyl amide trans rotamer with a retarded cis/trans isomerization rate in water. ROESY and temperature coefficient experiments indicate that replacement of Pro with (5'S)-Glc(3S)-Hyp doesn't disturb the original conformation of the tetrapeptide. (2) Antibacterial in vitro tests of the dipeptides H2N-GlcTk-Tyr-OBn and H2N-GlcTk-Tyr-NHBn show that substitution of D-lysine by carbohydrate-templated-D-lysine analog GlcTk results in decreased antibacterial activity against Gram-positive and Gram-negative organisms. In addition, we discovered that the nature of the C-terminal substituent and the presence of hydrophobic moieties are crucial for antibacterial activity. (3) The conformational analysis of peptide mimics Ac-GlcTProLysHs-OMe (NHMe) demonstrate that unnatural, high lysyl cis amide rotamer populations can be achieved. This enables peptide chemists now to explore the biological implications of the lysyl cis amide population in lysine-rich antimicrobial peptides and other peptides.
机译:碳水化合物模板氨基酸(CTAA)已在肽模拟物和糖模拟物的合成中得到广泛应用。在这里,我们描述了三种新型CTAA的设计,合成和构象性质:螺环葡萄糖模板的3(S)-羟基-L-脯氨酸类似物(Glc(3S)-Hyp),葡萄糖模板的D-和L-赖氨酸类似物(GlcTk,GlcTK)和葡萄糖为模板的L-脯氨酸赖氨酸杂种(GlcTProLysHs)。为了探索这些构造基团在肽化学中的用途,将所有三种CTAA掺入了肽或肽模拟物中,并研究了热力学,动力学和诱导β转变的性质。这些研究得出以下观察和结论:(1)肽模拟Ac-Glc(3S)-Hyp-OMe,Ac-Glc(3S)-Hyp-NHMe和四肽Ac-Leu-D-Phe-的研究Glc(3 S)-Hyp-Val-NMe2证明(5'R)-Glc(3 S)-Hyp增加了脯氨酰胺顺式旋转异构体的数量,并在水中加速了顺式/反式异构化动力学,并诱导了VIa型β-转角与未修饰的参考肽Ac-Pro-OMe,Ac-Pro-NHMe,Ac-(3S)-Hyp-OMe和Ac-(3S)-Hyp-NHMe相比,四肽中的氨基酸含量更高。而非对映异构体(5'S)-GlcTPro更喜欢在水中顺式/反式异构化速率受阻的脯氨酰胺反式旋转异构体。 ROESY和温度系数实验表明,用(5'S)-Glc(3S)-Hyp取代Pro不会干扰四肽的原始构象。 (2)对二肽H2N-GlcTk-Tyr-OBn和H2N-GlcTk-Tyr-NHBn的体外抗菌试验表明,用碳水化合物为模板的D-赖氨酸类似物GlcTk取代D-赖氨酸会降低对Gram-的抗菌活性。阳性和革兰氏阴性生物。此外,我们发现C末端取代基的性质和疏水部分的存在对抗菌活性至关重要。 (3)肽模拟物Ac-GlcTProLysHs-OMe(NHMe)的构象分析表明,可以实现非天然的高赖氨酰顺式酰胺旋转异构体群体。现在,这使肽化学家们能够探索富含赖氨酸的抗菌肽和其他肽中赖氨酰顺式酰胺种群的生物学意义。

著录项

  • 作者

    Zhang, Kai-Dong.;

  • 作者单位

    University of Manitoba (Canada).;

  • 授予单位 University of Manitoba (Canada).;
  • 学科 Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 316 p.
  • 总页数 316
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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