首页> 外文OA文献 >THE DESIGN AND SYNTHESIS OF NOVEL UNNATURAL AMINO ACIDS AND THE DESIGN AND SYNTHESIS OF PEPTIDES PEPTIDOMIMETICS CONTAINING UNNATURAL AMINO ACIDS FOR THE STUDY OF G-PROTEIN COUPLED RECEPTORS
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THE DESIGN AND SYNTHESIS OF NOVEL UNNATURAL AMINO ACIDS AND THE DESIGN AND SYNTHESIS OF PEPTIDES PEPTIDOMIMETICS CONTAINING UNNATURAL AMINO ACIDS FOR THE STUDY OF G-PROTEIN COUPLED RECEPTORS

机译:新型非天然氨基酸的设计与合成以及含非天然氨基酸的肽和肽亚型的设计与合成,用于研究G蛋白偶联受体

摘要

Nature has gifted peptides as important modulators in the human body, but these types of molecules often have not been favored when we were looking for therapeutic agents. The poor bioavailability, fast degradation and until recent high manufacturing costs of some bioactive peptides lowered their potential usage in the health industry. Under these circumstances, unnatural amino acids were developed as indispensible tools providing enormous support to peptide science. By incorporating proper unnatural amino acids into a peptide or protein, we now can significantly improve peptide's or protein's half-life, cell permeability, bio-distribution, etc. In addition, their potency and receptor/acceptor selectivity could also be enhanced. Site-specific modifications of peptides and proteins under physiological conditions with the use of unnatural amino acids also have been made easier with the advance of biotechnology. Therefore, my research described in this dissertation contributes to the efforts in the development of novel unnatural amino acids. In particular, I have focused on novel methods in the synthesis of anti beta-functionalized gamma,delta-unsaturated amino acids. These amino acids have special interests in peptide chemistry: they can provide conformational constraints to the peptide 3D structures; the beta-functionalization allows the introduction of pharmaceutically interesting side chain groups; and the terminal double bond which is orthogonal to peptide synthesis provides access to further chemical modifications. Two general methodologies for the synthesis of both racemic and optically active anti beta-functionalized gamma,delta--unsaturated amino acids were developed by using the thio-Claisen rearrangement (TCR) reaction. Excellent diastereoselectivies and enantioselectivities were obtained when C2-symmetric chiral auxiliaries were selected to control the stereochemistry outcome. The mechanism and the scope of the TCR reaction were also studied, showing unique advantages in the preparation of these biological interesting amino acids.Another effort of developing angiotensin II type 1 (AT1) receptor biased peptide ligands is also documented in this dissertation. The AT1 receptor is a 7-transmembrane G-protein coupled receptor, which recent researches have shown could be activated through a beta-arrestins only, but G-protein independent, pathway. We synthesized 12 analogs of Sar1,Ile4,Ile8-AngII (SII), and tested them in biological assays, and obtained valuable information for further "perfect" biased ligands design.
机译:大自然赋予肽作为人体中重要的调节剂,但是当我们寻找治疗剂时,这些分子类型通常并不受欢迎。不良的生物利用度,快速降解以及直到最近一些生物活性肽的高制造成本降低了其在保健行业中的潜在用途。在这种情况下,非天然氨基酸被开发为必不可少的工具,为肽科学提供了巨大的支持。通过将适当的非天然氨基酸掺入肽或蛋白质中,我们现在可以显着改善肽或蛋白质的半衰期,细胞通透性,生物分布等。此外,它们的效能和受体/受体选择性也可以得到增强。随着生物技术的进步,在生理条件下使用非天然氨基酸对肽和蛋白质进行位点特异性修饰也变得更加容易。因此,本论文描述的研究为新型非天然氨基酸的开发做出了贡献。特别地,我集中于合成抗β-官能化的γ,δ-不饱和氨基酸的新方法。这些氨基酸在肽化学中具有特殊意义:它们可以为肽3D结构提供构象约束; β-官能化允许引入药学上感兴趣的侧链基团;与肽合成正交的末端双键提供了进一步的化学修饰的途径。通过使用硫代克莱森重排(TCR)反应,开发了两种合成外消旋和旋光的抗β-官能化的γ-δ-不饱和氨基酸的通用方法。当选择C2对称手性助剂来控制立体化学结果时,可获得出色的非对映选择性和对映选择性。还研究了TCR反应的机理和范围,显示出在制备这些有趣的氨基酸方面的独特优势。本文还记录了开发血管紧张素II 1型(AT1)受体偏置肽配体的另一项努力。 AT1受体是7跨膜G蛋白偶联受体,最近的研究表明只能通过β-arrestins激活,但不依赖G蛋白。我们合成了Sar1,Ile4,Ile8-AngII(SII)的12个类似物,并在生物学分析中对其进行了测试,并获得了有价值的信息,可用于进一步的“完美”偏向配体设计。

著录项

  • 作者

    Liu Zhihua;

  • 作者单位
  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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