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[3,3]-rearrangements of phosphonium ylides and dipole-induced dipole interactions for molecular recognition in DNA.

机译:[3,3] yl的重排和偶极子诱导的偶极子相互作用,用于在DNA中进行分子识别。

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摘要

Phosphonate esters have far-reaching applications as synthetic building blocks for bioactive natural products and as precursors to alpha-aminophosphonic acids. While they are important synthetic intermediates, methods for the preparation of phosphonate esters bearing multiple substituents at the alpha position are relatively limited. The [3,3]-sigmatropic rearrangement of phosphonium ylides, a new reaction manifold, was developed and explored as a method for synthesizing phosphonate esters with diverse and complex structure. The phosphonium ylides were prepared by reacting an allylic alcohol with an activated phosphorus (III) species followed by addition of a diazo compound and an transition metal catalyst. Heating the ylides induces a [3,3]-sigmatropic rearrangement to form a new carbon-carbon bond. Chapter II introduces the reaction and discusses the mechanism which was elucidated through various methods including 31P NMR experiments, crossover experiments, and a modeling study.; The scope of the phosphonium ylide rearrangement was investigated by surveying a range of allylic alcohols with various substitution patterns and functional groups as well as numerous diazo compounds. Chapter III discusses the diversity of viable reagents for the rearrangement and the numerous phosphonate esters that can be generated using this new method. In addition, subsequent transformations of the rearrangement products were explored such as Homer-Wadsworth-Emmons olefinations to yield a variety of nonsymmetrical, skipped dienes and electrophilic amination reactions to yield alpha-aminophosphonic acid derivatives.; The development of novel base pairs for DNA has provided methods for expanding the genetic code as well as for studying the details of protein-nucleic acid interactions. A molecular recognition element commonly used in crystal engineering, the dipole-induced dipole interaction, was incorporated into a novel base pair for DNA. Chapter I presents the molecular recognition motif, the nitro··halogen interaction, and how it has proven useful in directing supramolecular assemblies. Chapter IV discusses how the nitro··halogen contact was incorporated onto non-natural nucleobases and into oligonucleotides. Thermal denaturation experiments were performed to evaluate the stability and specificity of the interaction in the context of DNA.
机译:膦酸酯作为生物活性天然产物的合成基础材料和α-氨基膦酸的前体具有广泛的应用。尽管它们是重要的合成中间体,但是制备在α位带有多个取代基的膦酸酯的方法相对有限。 new的[3,3]-σ重排是一种新的反应流形,它是一种合成具有多种复杂结构的膦酸酯的方法。通过使烯丙醇与活化的磷(III)物质反应,然后加入重氮化合物和过渡金属催化剂来制备。加热叶利德引发[3,3]-σ重排,形成新的碳-碳键。第二章介绍了反应并讨论了通过各种方法阐明的机理,包括31 P NMR实验,交叉实验和模型研究。通过调查一系列具有各种取代方式和官能团的烯丙基醇以及多种重氮化合物,研究了磷鎓叶立德重排的范围。第三章讨论了用于重排的可行试剂的多样性以及使用这种新方法可产生的众多膦酸酯。另外,还研究了重排产物的后续转化,例如荷马-沃兹沃思-埃蒙斯烯化反应,以产生各种不对称的,跳过的二烯和亲电胺化反应,以产生α-氨基膦酸衍生物。 DNA新型碱基对的开发提供了扩展遗传密码以及研究蛋白质-核酸相互作用细节的方法。偶极诱导的偶极相互作用是晶体工程中常用的一种分子识别元件,被并入了DNA的新型碱基对中。第一章介绍了分子识别基序,硝基·卤素相互作用以及如何证明其在指导超分子组装中的作用。第四章讨论了硝基·卤素接触是如何结合到非天然核碱基和寡核苷酸上的。进行了热变性实验,以评估在DNA环境中相互作用的稳定性和特异性。

著录项

  • 作者

    Ferguson, Marcelle L.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 189 p.
  • 总页数 189
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 有机化学;
  • 关键词

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