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Synthesis and Stereochemical Determination of Complestatins: Development of a Palladium(0)-Mediated Indole (Macro)cyclization Reaction.

机译:Complestatins的合成和立体化学测定:钯(0)介导的吲哚(宏)环化反应的发展。

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摘要

The chloropeptin and complestatin families of glycopeptides are complex natural products with potent anti-HIV properties whose activity is mediated through two complementary sites of action. Previously, our laboratory reported the first total synthesis of chloropeptin II (complestatin), the more strained and challenging of the two naturally occurring chloropeptins. Key to the synthesis was the development of a Pd(0)-mediated macrocyclization that furnished the indole and closed the 16.17-membered DEF macrocycle in a single, high yielding step with excellent control of atropselectivity. Herein, we disclose macrocyclization studies detailing the scope and the factors governing the atropselectivity, its use in directly accessing the chloropeptin I versus II DEF ring system as well as key unnatural isomers, and its utility for both peptide-derived and more conventional carbon-chain based macrocycles. The studies further define a powerful method complementary to the Stille or Suzuki cross-coupling reactions for the synthesis of cyclic or macrocyclic ring systems containing an embedded indole, tolerating numerous functional groups and incorporating various (up to 28-membered) ring sizes. We also disclose a catalytic variant of the reaction along with a powerful Pd2(dba)3 derived catalyst system and its extension to intramolecular cyclizations with formation of common ring sizes.;By virtue of a single-step, acid-catalyzed ring expansion rearrangement of chloropeptin II to chloropeptin I, both syntheses of chloropeptin II also provided a total synthesis of chloropeptin I. Herein, we examine the factors governing the acid-catalyzed rearrangement on the DEF macrocycle.;We report a complementary and divergent oxidation of chloropeptin II (complestatin) to either complestatin A (neuroprotectin A) or complestatin B (neuroprotectin B), providing the first synthesis of the natural products and establishing their remaining stereochemical assignments. Key to the approach was development of mild reaction conditions to synthesize each natural product in a single step from chloropeptin II (complestatin). Studies conducted on the DEF ring system of complestatin were key to the unambiguous assignment of the stereochemistry as well as the exploration and development of the mild oxidation conditions used in the synthesis.
机译:糖肽的氯肽和补菌素家族是具有有效抗HIV特性的复杂天然产物,其活性是通过两个互补的作用位点介导的。以前,我们的实验室报道了第一个完全合成的氯肽素II(complestatin),这是两种天然存在的氯肽素的紧张和挑战。合成的关键是Pd(0)介导的大环化反应的发展,该反应提供了吲哚并在一个单一的高收率步骤中封闭了16.17元的DEF大环化合物,并具有出色的阻转选择性控制。在本文中,我们公开了大环化研究,详细介绍了控制厌氧选择性的范围和因素,其在直接访问氯肽I与II DEF环系统以及关键的非天然异构体中的用途,以及其在衍生肽和更常规的碳链中的用途基于宏周期。研究进一步定义了一种强大的方法,可与Stille或Suzuki交叉偶联反应互补,用于合成包含嵌入式吲哚,可耐受多个官能团并结合各种(最多28元)环大小的环状或大环系统。我们还公开了该反应的催化变体以及功能强大的Pd2(dba)3衍生的催化剂系统,并将其扩展到分子内环化反应并形成了常见的环大小;通过单步酸催化的环膨胀重排氯肽II到氯肽I,氯肽II的合成也提供了氯肽I的全合成。在这里,我们研究了DEF大环上酸催化重排的控制因素;;我们报道了氯肽II(互补抑素)的互补和发散性氧化。 )到补全他汀A(神经保护素A)或补全他汀B(神经保护素B),提供天然产物的首次合成并确定其剩余的立体化学分配。该方法的关键是开发温和的反应条件,以一步法从氯肽II(complestatin)合成每种天然产物。对complestatin的DEF环系统进行的研究对于立体化学的明确分配以及合成中使用的轻度氧化条件的探索和开发至关重要。

著录项

  • 作者

    Breazzano, Steven P.;

  • 作者单位

    The Scripps Research Institute.;

  • 授予单位 The Scripps Research Institute.;
  • 学科 Chemistry Organic.;Chemistry Inorganic.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 189 p.
  • 总页数 189
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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