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Conformational preferences and structural characterization of prolyl cis/trans isomerization of carbohydrate-templated proline mimetics of some model peptides using computational methods.

机译:使用计算方法,某些模型肽的碳水化合物模板脯氨酸模拟物的脯氨酰顺式/反式异构化的构象偏好和结构表征。

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摘要

Over the years a number of proline analogues have been developed to study the structural and biological properties of proline surrogates in peptides. This is due to the fact that the prolyl N-terminal cis/trans isomerization rate and equilibrium ratios of specific proline analogues are helpful in detecting and monitoring the local structure and environment of proline. Although these analogues have proven to be useful for inducing specific constraints on prolyl N-terminal amide isomerization, but lacks the ability to shift the prolyl amide equilibrium into both directions. In this study a computational analysis on some novel carbohydrate-templated proline mimetics model peptides were performed, in order to determine the effect of the carbohydrate moiety incorporation onto the proline based peptides. An extensive conformational analysis of these model peptides demonstrated that the carbohydrate moiety influences the cis/trans ratio and kinetics of the isomerization reaction.In addition, a reliable computational protocol was developed for the computational calculations of these model peptides and ha the results produced using this protocol were in excel1ent agreement with the experimental data. Final1y, this quantum mechanical study of the sugar proline analogues in addition to the extensive experimental data gave us a further insight and trend into prediction of the conformational equilibria and kinetics of the carbohydrate-templated proline-based peptidomimetics.A detailed Density Functional Theory analysis of these model peptides in water predicts that the stability of the cis population of Compound 1 and Compound 2 depends on the orientation or position of the C delta-hydroxy-methylene substituent. Results on the structural characterization also show that the intramolecular hydrogen bond influences the cis/trans isomerization ratio. The puckering amplitude calculated for both Compound I and Compound 2 shows that the position of the C delta primary hydroxyl group greatly distorts, in particular for Compound 2, the puckering behaviour of the five-membered ring, which is a key parameter in collagen stabilization.
机译:多年来,已经开发了许多脯氨酸类似物来研究肽中脯氨酸替代物的结构和生物学特性。这是由于以下事实:脯氨酸的N端顺式/反式异构化速率和特定脯氨酸类似物的平衡比有助于检测和监测脯氨酸的局部结构和环境。尽管已经证明这些类似物可用于诱导对脯氨酰N-末端酰胺异构化的特定限制,但是缺乏将脯氨酰胺的平衡向两个方向转移的能力。在这项研究中,对一些新型的以碳水化合物为模板的脯氨酸模拟物模型肽进行了计算分析,以确定碳水化合物部分掺入基于脯氨酸的肽中的作用。对这些模型肽的广泛构象分析表明,碳水化合物部分影响异构化反应的顺式/反式比和动力学。此外,开发了可靠的计算方案来对这些模型肽进行计算,并由此获得了结果方案与实验数据一致。最后,对糖脯氨酸类似物的量子力学研究以及广泛的实验数据为我们提供了进一步的洞察力和趋势,可预测基于碳水化合物的脯氨酸肽模拟物的构象平衡和动力学。详细的密度泛函理论分析这些模型肽在水中可预测化合物1和化合物2的顺式种群的稳定性取决于Cδ-羟基-亚甲基取代基的方向或位置。结构表征结果还表明,分子内氢键影响顺/反异构化比。针对化合物I和化合物2两者计算的起皱幅度表明,Cδ伯羟基的位置极大地扭曲,特别是对于化合物2,五元环的起皱行为是胶原稳定化的关键参数。

著录项

  • 作者

    Teklebrhan, Robel Berhe.;

  • 作者单位

    University of Manitoba (Canada).;

  • 授予单位 University of Manitoba (Canada).;
  • 学科 Chemistry Organic.Chemistry Physical.
  • 学位 M.Sc.
  • 年度 2009
  • 页码 150 p.
  • 总页数 150
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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