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A Synthetic Route to the Dihydroanthracenone Core of the Trioxacarcins.

机译:合成三氧杂aca嗪二氢蒽酮核心的途径。

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摘要

The trioxacarcins are a class of DNA-reactive natural products with antiproliferative activity in cultured human cancer cells. The trioxacarcin aglycone is comprised of a dihydroanthracenone chromophore fused to an oxygenated ring system containing three ketal functions and a spiro epoxide. This thesis presents the chemical synthesis of the chromophore common to all of the trioxacarcin natural products and describes the first studies on the reactivity of non-glycosylated trioxacarcins toward a DNA oligonucleotide.*;The trioxacarcin dihydroanthracenone chromophore was prepared from two building blocks: cyanophthalide 25 and enone 26. The cyanophthalide 25 was prepared in eight steps from 4-methylsalicylic acid. The enone 26 was prepared using three distinct synthetic routes. The first route to 26 was accomplished in eight steps from resorcinol, the second route was accomplished in ten steps from L-malic acid, and the third route was accomplished in ten steps from D-quinic acid. The building blocks 25 and 26 were combined using a cyanophthalide annulation reaction to provide the dihydroanthracenone 99, and, in two steps, 99 was elaborated to the aldehyde 23. The aldehyde 23 was converted into the natural product DC-45-A2 (4) in five steps, as described in a Ph.D. thesis presented by Dr. Jakub Svenda in 2010 at Harvard University in the Department of Chemistry and Chemical Biology titled A Convergent Synthetic Route to Trioxacarcins.;Trioxacarcin A, a glycosylated member of the trioxacarcin family, has previously been shown to form a covalent adduct with duplex DNA through a reaction between the N7 atom of a guanine residue and the epoxide function of the natural product. Herein, experiments that assessed the reactivity of the non-glycosylated trioxacarcins DC-45-A2 (4), iso-DC-45-A2 (109), and dideoxy-DC-45-A2 (84) towards the self-complementary duplex DNA oligonucleotide d(AATTACGTAATT) using DNA-gel electrophoresis and a liquid chromatography-mass spectrometry method are described. Both techniques showed that DC-45-A2 (4) and dideoxy-DC-45-A2 (84), which possess the stereochemical configuration of the natural trioxacarcins, form complexes with the DNA oligonucleotide, while iso-DC-45-A2 (109 ), which does not possess the stereochemical configuration of the natural trioxacarcins, does not form a complex with the DNA oligonucleotide.;*Please refer to dissertation for diagrams.
机译:三氧杂rc呤是一类具有DNA活性的天然产物,在培养的人类癌细胞中具有抗增殖活性。三ox螨素糖苷配基由与含三个缩酮功能和螺环氧化物的氧化环系统稠合的二氢蒽酮发色团组成。本论文介绍了所有三氧杂色胺天然产物共有的生色团的化学合成,并描述了非糖基化的三氧杂rc呤对DNA寡核苷酸的反应性的首次研究。*;三氧杂色胺二氢蒽酮发色团是由两个结构单元制备的:氰酞25氰基邻苯二甲酸酯25是由4-甲基水杨酸分八步制备的。使用三种不同的合成途径制备烯酮26。从间苯二酚到八步的第一个反应是从26步完成的,从L-苹果酸到第十步的是第二步,从D-奎宁酸到第十步的第三步是完成。使用氰基酞酸酯环化反应将结构单元25和26合并以提供二氢蒽酮99,然后分两步将99精制为醛23。将醛23转化为天然产物DC-45-A2(4)按照博士学位描述的五个步骤雅库布·斯文达(Jakub Svenda)博士于2010年在哈佛大学化学与化学生物学系发表的论文题为《三氧黄精的聚合合成路线》;三氧嘧啶家族中糖基化的成员三氧嘧啶A先前已证明与三氧嘧啶形成共价加合物通过鸟嘌呤残基的N7原子与天然产物的环氧功能之间的反应生成双链DNA。本文中,评估了非糖基化三氧沙卡汀DC-45-A2(4),iso-DC-45-A2(109)和双脱氧DC-45-A2(84)对自身互补双链体反应性的实验描述了使用DNA凝胶电泳和液相色谱-质谱法的DNA寡核苷酸d(AATTACGTAATT)。两种技术都表明,具有天然三氧杂rc呤的立体化学构型的DC-45-A2(4)和双脱氧DC-45-A2(84)与DNA寡核苷酸形成复合物,而iso-DC-45-A2( 109)不具有天然三氧杂aca呤的立体化学构型,不会与DNA寡核苷酸形成复合物。; *请参阅论文以了解图表。

著录项

  • 作者

    Hill, Nicholas E.;

  • 作者单位

    Harvard University.;

  • 授予单位 Harvard University.;
  • 学科 Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 268 p.
  • 总页数 268
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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