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A complete program toward polyketide natural products: Methodology, synthesis, and conformational analysis.

机译:面向聚酮化合物天然产物的完整程序:方法,合成和构象分析。

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摘要

The pursuit of biologically active natural products affords numerous avenues of study, all of which strive for a common goal: enhancing activity of and access to potential lead compounds of therapeutic interest. The systems of particular interest to this research are polyketides synthase derived natural products and, in particular, the epothilones and peloruside A. Toward the design of novel methodologies, this project has focused on development of 1,3-diols and their related monoethers with high diastereoselectivity. The method has focused on the intramolecular delivery of an oxygen nucleophile in the form of a methyl ether. The delivery of the oxygen atom to a carbocation via multiple activation schemes was explored, with both iodide activation and alcohol triflation providing the desired diol-monoether in high yield and with high diastereoselectivity. The delivered oxygen nucleophile has also been demonstrated to be synthetically variable, affording both stable and labile ether products.;The synthesis of natural product analogues has also been addressed in the course of this research. Specifically, the total synthesis of a hybrid analogue of the epothilones has been undertaken affording two analogues containing both a C14 methyl group and a C9-C 10 olefin, both designed to impact the conformation of the macrocycle. In the course of the synthesis, a new methodology was employed to install the C14 methyl group, employing the magnesium-catalyzed anti-aldol chemistry developed by Evans. This reaction provided a simple and highly selective method to install the C14 and C 15 stereocenters in a single and high-yielding step.;A final and novel project in our efforts toward polyketides is the design of analogues based on analysis of solution conformation. This research has provided an advanced spreadsheet-based method to process data generated by a strategy of molecular modeling and dihedral determination into polar coordinate maps suitable for analysis of large amounts of conformational data. In addition, comparisons of molecular modeling of peloruside A has been accomplished by an array of diverse force fields using the conformational search routines of the MacroModel software. This analysis has revealed interesting conformational preferences of the C9-C15 region of peloruside, which may be exploited in the design of novel analogues based on molecular conformation.
机译:对具有生物活性的天然产物的追求提供了许多研究途径,所有这些途径都力争实现一个共同的目标:增强具有治疗意义的潜在先导化合物的活性并获得其潜在的机会。这项研究特别感兴趣的系统是聚酮化合物合酶衍生的天然产物,尤其是埃坡霉素和鹅膏苷A。为设计新方法,该项目着重开发1,3-二醇及其相关的单醚非对映选择性。该方法集中于以甲基醚形式的氧亲核试剂的分子内递送。探索了通过多种活化方案将氧原子递送至碳正离子,其中碘化物活化和醇三氟甲基化二者以高收率和高非对映选择性提供所需的二醇-单醚。还证明了所递送的氧亲核试剂是合成可变的,提供稳定和不稳定的醚产物。天然产物类似物的合成也在该研究过程中得到解决。具体而言,已经进行了埃坡霉素的杂合类似物的全合成,得到了两种同时包含C14甲基和C9-C 10烯烃的类似物,两者均设计用于影响大环的构象。在合成过程中,采用了一种新的方法来安装C14甲基,并采用了Evans开发的镁催化的抗羟醛化学方法。该反应提供了一种简单且高度选择性的方法,可在单个高产量步骤中安装C14和C 15立体中心。我们在聚酮化合物方面的努力的最后一个新颖项目是基于溶液构象分析的类似物设计。这项研究提供了一种基于电子表格的高级方法,可将通过分子建模和二面体确定策略生成的数据处理成极坐标图,适用于分析大量构象数据。此外,通过使用MacroModel软件的构象搜索例程,通过一系列不同的作用力场,完成了蛇绿苷A分子模型的比较。该分析揭示了白去糖苷C9-C15区域的有趣构象偏好,其可在基于分子构象的新型类似物的设计中利用。

著录项

  • 作者单位

    University of Notre Dame.;

  • 授予单位 University of Notre Dame.;
  • 学科 Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 307 p.
  • 总页数 307
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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