首页> 外文OA文献 >Asymmetric synthesis of unusual amino acids for peptide molecular design and molecular recognition studies.
【2h】

Asymmetric synthesis of unusual amino acids for peptide molecular design and molecular recognition studies.

机译:用于肽分子设计和分子识别研究的不寻常氨基酸的不对称合成。

摘要

Asymmetric synthetic organic chemistry of amino acids is of fundamental importance for the study of peptide and protein molecular design and molecular recognition. The designed unusual amino acids can provide unique conformational and topographical properties that are crucial for molecular recognition processes between peptide ligands and specific receptors, receptor subtypes, and the related signal transduction processes. It is necessary to design and synthesize optically pure unusual amino acids to meet different stereochemical requirements for different receptors and the various active sites on receptors. The Evans-type auxiliary has played an important role in the asymmetric synthesis of optically pure amino acids in the past decade. However, a lot of theoretical and practical research aspects in this field which are related to sensitive chiral enolates, new methodologies and new synthetic procedures need to be investigated. This thesis will present some new tactics for peptide molecular design, for asymmetric synthesis of β-branched α-amino acids and for the related mechanistic organic chemistry which include: a one-pot tandem Michael-like addition/electrophilic bromination reaction and its application to the total asymmetric synthesis of four individual four individual isomers of 2', β-di-methyl tyrosine; an efficient mono- and di-demethylation procedure for aryl-methyl ethers of unusual amino acids; 1,2-asymmetric cis electrophilic induction in allylic-strained boron enolates and its potential application for the asymmetric synthesis of unusual amino acids; a new strategy for the total synthesis of the four individual isomers of β-methylphenylalanine by using 4-phenyl-oxazolidinone as a new chiral resolution reagent and simultaneously as a chiral auxiliary which can provide complete stereoselectivities; a concise method to separate racemic Boc-amino acids, including Boc-unusual amino acids, and a new chiral resolution reagent for HPLC and NMR analysis; a mechanistic study of the asymmetric Michael-like addition reaction by using 4-phenyl-oxazolidinone as a chemical probe (and a potential probe to study biological processes in the future when this motif is incorporated into biologically active molecules). In the last part of the thesis, a new method for the synthesis of the peptide Biphalin, which is perhaps the most potent antinociceptive molecule examined thus far, by solution phase procedures which greatly accelerates the synthetic process and the structure-activity relationships study of Biphalin from the new uses of β-constrained unusual amino acids. Finally, some new strategies for peptide molecular design are discussed.
机译:氨基酸的不对称合成有机化学对于研究肽和蛋白质的分子设计和分子识别至关重要。设计的非常规氨基酸可以提供独特的构象和地形特性,这对于肽配体和特定受体之间的分子识别过程,受体亚型以及相关的信号转导过程至关重要。有必要设计和合成光学纯的不寻常氨基酸,以满足对不同受体和受体上各种活性位点的不同立体化学要求。在过去的十年中,Evans型助剂在光学纯氨基酸的不对称合成中发挥了重要作用。但是,该领域中与敏感手性烯醇有关的许多理论和实践研究,新方法和新合成方法都需要研究。本论文将为肽分子设计,β-支链α-氨基酸的不对称合成以及相关的有机化学机理提供一些新的策略,包括:一锅串联迈克尔样加成/亲电溴化反应及其在有机合成中的应用。 2',β-二甲基酪氨酸的四个单独的四个单独的异构体的总不对称合成;一种有效的单和二去甲基化方法,用于非常规氨基酸的芳基甲基醚;烯丙基应变硼烯醇盐中的1,2-不对称顺电亲核诱导及其在不对称氨基酸非对称合成中的潜在应用;通过使用4-苯基-恶唑烷酮作为新的手性拆分试剂,同时作为可提供完全立体选择性的手性助剂,完全合成β-甲基苯基丙氨酸的四个异构体的新策略;分离外消旋Boc氨基酸(包括Boc罕见氨基酸)的简洁方法,以及用于HPLC和NMR分析的新型手性拆分试剂;通过使用4-苯基-恶唑烷酮作为化学探针对不对称的迈克尔样加成反应进行机理研究(也是将这种基序并入生物活性分子中以研究未来生物学过程的潜在探针)。在论文的最后部分中,通过溶液相程序极大地加速了Biphalin的合成过程和结构-活性关系的研究,提出了一种合成Biphalin肽的新方法,Biphalin可能是迄今为止所研究的最有效的抗伤害感受性分子。 β约束的异常氨基酸的新用途。最后,讨论了一些新的肽分子设计策略。

著录项

  • 作者

    Li Guigen.;

  • 作者单位
  • 年度 1995
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号