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I. Total synthesis of smenochromene B and halenaquinone and II. Studies on the chemical and biological properties of azobenzene photoswitches.

机译:I.全色素二烯B和卤代醌和II的全合成。偶氮苯光开关的化学和生物学特性研究。

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摘要

Part one of this dissertation describes synthetic efforts toward two separate but structurally related groups of marine sesquiterpene quinone natural products, the smenochromene/likonide family and halenaquinone, and culminates in the total synthesis of smenochromene B and halenaquinone. The total synthesis of smenochromene B and efforts towards likonide A centered around the use of smenochromene D as a synthetic intermediate. A macrocyclic ring contraction and double bond isomerization was the key transformation necessary to produce smenochromene B. During the optimization of the synthesis of smenochromene D, two different and remarkable oxidative dimers were isolated, and the mechanism by which they are formed is discussed. Additionally, density functional theory calculations were used to investigate the oxa-6th electrocyclization used to synthesize smenochromene D and are believed to be biologically relevant to the markedly different levels of enantiomeric excess observed within members of the structural family.;Halenaquinone, a biologically active pentacyclic quinone isolated from the marine sponge Xestospongia exigua, is biosynthetically related to the smenochromene/likonide family. The total synthesis of halenaquinone reported here features two key steps: a diastereoselective intramolecular Heck reaction, which sets the all-carbon quaternary stereocenter, and an intramolecular inverse-electron-demand Diels--Alder cycloaddition using a vinyl- orthoquinone methide as a diene. This is the first application of such a Diels--Alder cycloaddition to total synthesis. In order to better understand the Diels--Alder reaction, density functional theory calculations were performed to analyze two relevant transition states.;Part two describes several projects focused around the synthesis of photoswitchable azobenzene ligands. In order to build on previous work that demonstrated photoregulation of wild-type voltage-gated potassium channels by membrane permeable blockers, a new series of compounds was synthesized with red-shifted absorption maxima. Two new azobenzene containing blockers were identified as being able to regulate voltage-gated potassium channels by toggling between darkness and irradiation with 472 nm light; one compound blocked voltage-gated potassium channels in the trans form, the other in the cis form. Additionally, azobenzene compounds based on the drugs lidocaine and retigabine were synthesized, and preliminary biological data are reported. Finally, the syntheses of azobenzene analogs of the anti-cancer and life-extending (in lower organisms) compound resveratrol and a related protein-tyrosine kinase inhibitor piceatannol are reported.
机译:本论文的第一部分描述了对海洋中的倍半萜醌天然产物,即sm烯色烯/酮体和family烯醌的两个独立但结构相关的类群的合成努力,并最终合成了chrome烯色素B和烯醌。 smenochromene B的总合成和对力克宁A的努力集中于使用smenochromene D作为合成中间体。大环收缩和双键异构化是生产smenochromene B的必要关键转化。在优化smenochromene D合成的过程中,分离了两个不同且引人注目的氧化二聚体,并讨论了它们的形成机理。此外,密度泛函理论计算被用于研究用于合成smenochromene D的oxa-6th电环化,并且被认为与在结构家族成员中观察到的对映异构体过量的显着不同水平具有生物学相关性。Halenaquinone,一种具有生物活性的五环从海生海绵Xestospongia exigua中分离出的醌,在生物合成上与smenochromene / likonide家族有关。此处报道的卤代醌的总合成具有两个关键步骤:非对映选择性分子内Heck反应(该反应设定了全碳四元立体中心)和分子内逆电子需求的Diels-Alder环加成反应,使用乙烯基邻苯二甲酸二甲酯作为二烯。这是这种Diels-Alder环加成法在全合成中的首次应用。为了更好地理解Diels-Alder反应,进行了密度泛函理论计算以分析两个相关的过渡态。;第二部分描述了几个围绕光开关偶氮苯配体合成的项目。为了在以前的工作证明膜可渗透的阻滞剂对野生型电压门控钾离子通道进行光调节的基础上,合成了一系列新的具有最大红移吸收的化合物。两种新的含偶氮苯的阻滞剂被确定为能够通过在黑暗和472 nm光照射之间进行切换来调节电压门控钾离子通道。一种化合物以反式形式阻断电压门控钾通道,另一种以顺式形式阻断。此外,合成了基于药物利多卡因和瑞替加滨的偶氮苯化合物,并报道了初步生物学数据。最后,报道了抗癌和延长生命的(在低等生物中)化合物白藜芦醇和相关的蛋白质-酪氨酸激酶抑制剂piceatannol的偶氮苯类似物的合成。

著录项

  • 作者

    Kienzler, Michael A.;

  • 作者单位

    University of California, Berkeley.;

  • 授予单位 University of California, Berkeley.;
  • 学科 Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 285 p.
  • 总页数 285
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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