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I. Study of protein-carbohydrate interaction on carbohydrate arrays. II: Synthesis of analogues of sphingosine base, nitric oxide donors and HDAC inhibitors.

机译:I.在碳水化合物阵列上蛋白质-碳水化合物相互作用的研究。 II:鞘氨醇碱,一氧化氮供体和HDAC抑制剂的类似物的合成。

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摘要

This dissertation describes my Ph.D. work that focused on the synthesis of thiol linker containing carbohydrate conjugates, synthesis of thiol difunctional linkers for the preparation of carbohydrate arrays to study protein carbohydrate interaction and the synthesis of analogues of sphingosine base, novel nitric oxide donors, HDAC inhibitors.;In chapter 1, carbohydrate array was introduced and the development of carbohydrate technology was reviewed.;In chapter 2, three thiol linker containing carbohydrate conjugates, mannose thiol linker conjugate, alkanethiol containing glycopolymer and lactose thiol linker conjugate, were synthesized and used to study protein carbohydrate interaction. Carbohydrate arrays from mannose thiol linker were used to detect the bacterial adhesion, arrays from glycopolymer conjugated with mannose and alkanethiol linker were used to detect lectin binding and the assay of enzymatic synthesis of alpha-1, 3 galactosyl trisaccharide was performed on the lactose array.;In chapter 3, two thiol difunctional linkers with methoxyamino or aminooxy functionality were synthesized as the substrates of functional self-assembled monolayers which will be further derivatized for the formation of carbohydrate arrays.;In chapter 4, using amino acid L-serine as the starting material, analogues of sphingosine base were synthesized for the study of biological role of glycolipids.;In chapter 5, a series of N-alkyl N'-hydroxyguanidines were synthesized and demonstrated to act as substrates of nitric oxide synthases (NOS). The discovery of these non-amino acid hydroxyguanidines as novel substrates also led to the discovery of a novel-binding mode of NOS.;In chapter 6, a series of SAHA analogues modified on the moiety of hydroxamic acid were synthesized to probe the structure requirement for the HDAC inhibitors.
机译:本文介绍了我的博士学位。第一章的工作集中在合成含碳水化合物缀合物的硫醇接头,合成用于蛋白质阵列研究蛋白质碳水化合物相互作用的硫醇双功能接头以及鞘氨醇碱类似物,新型一氧化氮供体,HDAC抑制剂的合成。在第二章中,合成了三种含糖巯基连接物,甘露糖硫醇连接物,链烷硫醇糖聚合物和乳糖硫醇连接物,研究了蛋白质与糖类的相互作用。使用来自甘露糖硫醇接头的碳水化合物阵列检测细菌粘附,来自与甘露糖缀合的糖聚合物和链烷硫醇接头的阵列用于检测凝集素结合,并在乳糖阵列上进行α-1、3半乳糖基三糖的酶促合成测定。 ;在第三章中,合成了两个具有甲氧基氨基或氨氧基官能团的硫醇双官能团连接基作为功能性自组装单分子层的底物,这些单分子层将被进一步衍生化以形成碳水化合物阵列。;在第四章中,使用氨基酸L-丝氨酸作为糖基作为起始原料,合成了鞘氨醇碱类似物以研究糖脂的生物学作用。在第5章中,合成了一系列N-烷基N'-羟基胍,并被证明可作为一氧化氮合酶(NOS)的底物。这些非氨基酸羟基胍作为新型底物的发现也导致了NOS的新型结合方式的发现。第六章,合成了一系列在异羟肟酸上修饰的SAHA类似物,以探讨其结构要求。用于HDAC抑制剂。

著录项

  • 作者

    Huang, Mingchuan.;

  • 作者单位

    The Ohio State University.;

  • 授予单位 The Ohio State University.;
  • 学科 Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 225 p.
  • 总页数 225
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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