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Asymmetric synthesis of chi-constrained pyroglutamic acids, glutamic acids and prolines for peptides and peptidomimetics

机译:Chi约束焦作谷氨酸,谷氨酸和脯氨酸用于肽和拟肽的不对称合成

摘要

The recent upsurge of interest in the peptide-based drug molecules has been accompanied by a great deal of attention to the design of stereochemically defined non-proteinogenic amino acids. As a continuous effort to develop efficient syntheses of χ-constrained amino acids in our group, we recently have developed a practical methodology for the asymmetric synthesis of substituted pyroglutamic acid, glutamic acid and proline analogues, which are of important use in examining the relationships between conformation and bioactivities of biologically important peptides (e.g. DPDPE, α-MSH). The key step in this method is an asymmetric Michael addition reaction between a chiral Ni(II)-complex of the glycine Schiff base (S)-NiGlyBPB, and derivatives of α,β-unsaturated carboxylic acids. This new method is the first highly diastereoselective, room temperature, organic base-catalyzed, asymmetric Michael addition reaction. Excellent chemical yields and diastereoselectivity, along with the simplicity of experimental procedure, renders the present method of immediate use for preparation of various novel beta-substituted pyroglutamic acids, glutamic acids and prolines. Decomposing the resulting addition products in acidic medium, followed by neutralizing with ammonia, gave optically pure substituted pyroglutamic; acids in good yields (>80%). The substituted pyroglutamic acids were converted to the corresponding substituted glutamic acids by hydrolysis in 6N HCl, or to substituted proline analogues by selective reduction of amide carbonyl group to a methylene group. Both novel substituted glutamic acids and prolines are being incorporated into biologically important peptide MT-II analogues for structure-activity studies.
机译:最近对基于肽的药物分子的兴趣激增伴随着对立体化学定义的非蛋白原氨基酸的设计的极大关注。为了不断努力开发我们组中受χ约束的氨基酸的有效合成方法,我们最近开发了一种实用的方法,用于不对称合成取代的焦谷氨酸,谷氨酸和脯氨酸类似物,这对于检查两者之间的关系非常重要。具有重要生物学意义的肽(例如DPDPE,α-MSH)的构象和生物活性。该方法的关键步骤是甘氨酸席夫碱(S)-NiGlyBPB的手性Ni(II)配合物与α,β-不饱和羧酸衍生物之间的不对称Michael加成反应。此新方法是第一个高度非对映选择性,室温,有机碱催化的不对称迈克尔加成反应。优异的化学收率和非对映选择性以及简单的实验步骤,使得本发明的方法可立即用于制备各种新型β-取代的焦谷氨酸,谷氨酸和脯氨酸。在酸性介质中分解所得的加成产物,然后用氨中和,得到光学纯的取代的焦谷氨酸。酸的收率高(> 80%)。通过在6N HCl中水解,将取代的焦谷氨酸转化为相应的取代的谷氨酸,或通过将酰胺羰基选择性还原为亚甲基,将其转化为取代的脯氨酸类似物。新型取代的谷氨酸和脯氨酸都被掺入生物学上重要的MT-II肽类似物中,用于结构活性研究。

著录项

  • 作者

    Cai Chaozhong;

  • 作者单位
  • 年度 2001
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
  • 中图分类
  • 入库时间 2022-08-20 20:35:19

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