首页> 外文期刊>Journal of the American Chemical Society >Site- and Stereoselective Chemical Editing of Thiostrepton by Rh-Catalyzed Conjugate Arylation: New Analogues and Collateral Enantioselective Synthesis of Amino Acids
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Site- and Stereoselective Chemical Editing of Thiostrepton by Rh-Catalyzed Conjugate Arylation: New Analogues and Collateral Enantioselective Synthesis of Amino Acids

机译:Rh催化的共轭芳基化对硫代普氏酮的定点和立体选择性化学编辑:氨基酸的新类似物和侧向对映选择性合成

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摘要

The synthesis of complex, biologically active molecules by catalyst-controlled, selective functionalization of complex molecules is an emerging capability. We describe the application of Rh-catalyzed conjugate arylation to the modification of thiostrepton, a complex molecule with potent antibacterial properties for which few analogues are known. By this approach, we achieve the site- and stereoselective functionalization of one subterminal dehydroalanine residue (Dha16) present in thiostrepton. The broad scope of this method enabled the preparation and isolation of 24 new analogues of thiostrepton, the biological testing of which revealed that the antimicrobial activity of thiostrepton tolerates the alteration of Dha16 to a range of amino acids. Further analysis of this Rh-catalyzed process revealed that use of sodium or potassium salts was crucial for achieving high stereoselectivity. The catalyst system was studied further by application to the synthesis of amino esters and amides from dehydroalanine monomers, a process which was found to occur with up to 93:7 er under conditions milder than those previously reported for analogous reactions. Furthermore, the addition of the same sodium and potassium salts as applied in the case of thiostrepton leads to a nearly full reversal of the enantioselectivity of the reaction. As such, this study of site-selective catalysis in a complex molecular setting also delivered synergistic insights in the arena of enantioselective catalysis. In addition, these studies greatly expand the number of known thiostrepton analogues obtained by any method and reveal a high level of functional group tolerance for metal-catalyzed, site-selective modifications of highly complex natural products.
机译:通过催化剂控制的,对复杂分子的选择性官能化来合成复杂的生物活性分子是一种新兴的能力。我们描述了Rh催化的共轭芳基化在thiostrepton修饰中的应用,thiostrepton是一种具有有效抗菌特性的复杂分子,几乎没有类似物。通过这种方法,我们实现了存在于硫代链霉菌素中的一个亚末端脱氢丙氨酸残基(Dha16)的位点和立体选择性功能化。该方法的广泛应用范围使其能够制备和分离出24种新的硫代链霉菌类似物,其生物学测试表明,硫代链霉菌素的抗菌活性可耐受Dha16改变为多种氨基酸。对这种Rh催化过程的进一步分析表明,钠盐或钾盐的使用对于实现高立体选择性至关重要。通过将催化剂体系用于脱氢丙氨酸单体的合成氨基酯和酰胺,对催化剂体系进行了进一步研究,发现该过程在比以前报道的类似反应温和的条件下,以高达93:7的速率发生。此外,添加与在硫代链霉菌素的情况下相同的钠盐和钾盐导致反应的对映选择性几乎完全逆转。因此,这项在复杂分子环境中进行定点催化的研究在对映选择性催化领域也提供了协同的见解。另外,这些研究极大地扩展了通过任何方法获得的已知硫代链霉菌类似物的数量,并揭示了高度复杂的天然产物对金属催化的位点选择性修饰的高官能团耐受性。

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  • 来源
    《Journal of the American Chemical Society》 |2017年第43期|15460-15466|共7页
  • 作者

    Key Hanna M.; Miller Scott J.;

  • 作者单位

    Department of Chemistry, Yale University, New Haven, CT, United States,Department of Chemistry, Grinnell College, Grinnell, IA, United States;

    Department of Chemistry, Yale University, New Haven, CT, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-18 03:08:06

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