Total Synthesis of Polycyclic Natural Products via Photoenolization/Diels-Alder Reaction.

IF 16.4 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Accounts of Chemical Research Pub Date : 2025-04-15 Epub Date: 2025-04-02 DOI:10.1021/acs.accounts.5c00084
Baochao Yang, Min Hou, Shuanhu Gao
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引用次数: 0

Abstract

ConspectusPolycyclic ring systems represent the most common structural features of drug molecules and natural products. Chemical synthesis of complex polycyclic molecules with multiple stereogenic centers, especially quaternary carbon stereocenters, has been a significant challenge in the field of total synthesis. Due to the low reactivities of the substrates and congested chemical environments, the efficient establishment of polycyclic rings and enantioselective construction of quaternary carbon stereocenters are still ongoing challenges. In our laboratory, we are devoted to developing new methodologies and strategies for the total syntheses of bioactive polycyclic natural products and the exploration of their biological potentials. The photoenolization/Diels-Alder (PEDA) reaction has been recognized as a powerful strategy to increase synthetic efficiency and address the aforementioned issues. Over the past several years, our group systematically reinvestigated this reaction in terms of its reactivity and stereoselectivity and developed a unique dinuclear metal-promoted reaction process for constructing fused or spiro polycyclic rings bearing quaternary carbon stereocenters. During the course of this investigation, we have come to realize how to rationally design the synthetic route based on the PEDA reaction and successfully implement the synthetic projects.In this Account, we summarize our endeavors and journeys in the development and application of the PEDA reaction to the total synthesis of topologically complex natural products in order to draw attention to its broad utility and encourage further uptake. In the first part, we provide the details on the investigation of the PEDA reaction to address the issues of reactivity, diastereoselectivity, and enantioselectivity. An enantioselective PEDA reaction involving Ti(Oi-Pr)4 and TADDOL-type ligands was developed. This reaction enables the sterically bulky dienophiles to interact with the transient photoenolized hydroxy-o-quinodimethanes, delivering a wide range of polycyclic rings with single or vicinal quaternary carbon stereocenters in good yields with excellent enantioselectivities. In the second part, we showcase the synthetic potential of PEDA reaction in total synthesis of natural products. The fused tricyclic ring systems, bearing gem-dimethyl groups or quaternary carbon stereocenters located at the ring junction, were efficiently constructed by Ti(Oi-Pr)4-promoted PEDA reactions, which enabled the syntheses of three different types of natural products, including aromatic polyketides (anthrabenzoxocinones, fasamycins/naphthacemycins, and benastatins), meroterpenoid (oncocalyxone B), and halenaquinones (xestoquinone, adociaquinones A and B). To access structurally more complex triterpenoids, namely, perovskones and hydrangenones, the asymmetric PEDA reaction was developed to build a tricyclic ring along with three contiguous quaternary carbon stereocenters. The asymmetric PEDA reaction was also applied to achieve the total synthesis of aryltetralin lactone lignans. Furthermore, an intramolecular PEDA reaction provides a new pathway for the rapid construction of highly congested hydrophenanthrene with a quaternary carbon stereocenter, facilitating the total synthesis of five hasubanan alkaloids. We anticipate that the development of the PEDA reaction will inspire future innovations and progressions in asymmetric photo reactions, and its synthetic potential will be expanded by further applications in the total synthesis of complex natural and drug molecules.

光烯醇化/Diels-Alder反应合成天然多环产物。
多环体系代表了药物分子和天然产物最常见的结构特征。具有多个立体中心的复杂多环分子的化学合成,特别是季碳立体中心的合成,一直是全合成领域的一个重大挑战。由于底物反应活性低,化学环境拥挤,多环的高效建立和季碳立体中心的对映选择性构建仍然是一个挑战。在我们的实验室里,我们致力于开发新的方法和策略,用于生物活性多环天然产物的全合成和探索它们的生物潜力。光烯醇化/Diels-Alder (PEDA)反应已被认为是提高合成效率和解决上述问题的有力策略。在过去的几年中,本课题组系统地重新研究了该反应的反应活性和立体选择性,并开发了一种独特的双核金属促进反应工艺,用于构建含季碳立体中心的熔融或螺旋多环。在考察过程中,我们逐渐认识到如何合理设计以PEDA反应为基础的合成路线,并成功实施合成项目。本文总结了PEDA反应在拓扑复杂天然产物全合成中的开发和应用的努力和历程,以引起人们对其广泛用途的关注,并鼓励进一步利用。在第一部分中,我们提供了对PEDA反应的详细研究,以解决反应性,非对映选择性和对映选择性问题。建立了Ti(i- pr)4和taddol型配体参与的对映选择性PEDA反应。该反应使体积庞大的亲二烯试剂能够与瞬时光烯化的羟基-邻基二甲烷相互作用,产生具有单或邻季碳立体中心的多环,收率高,对映选择性好。在第二部分,我们展示了PEDA反应在天然产物全合成中的合成潜力。通过Ti(i- pr)4促进的PEDA反应,有效地构建了含有宝石二甲基或位于环结处的季碳立体中心的融合三环体系,从而合成了三种不同类型的天然产物,包括芳香聚酮(蒽苯并氧西林酮、fasamycins/naphthacemycins和benastatin)、巯基萜类(oncocalyxone B)和烯醌类(xestoquinone)。为了获得结构更复杂的三萜,即钙钛酮和球羟基烯酮,我们开发了不对称PEDA反应,构建了一个带有三个连续的季碳立体中心的三环。采用不对称PEDA反应,实现了芳四烯内酯木脂素的全合成。此外,分子内PEDA反应为快速构建具有季碳立体中心的高度密集的邻菲提供了新的途径,促进了五种哈苏巴南生物碱的全合成。我们预计,PEDA反应的发展将激发未来不对称光反应的创新和发展,其在复杂天然分子和药物分子的全合成中的进一步应用将扩大其合成潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Accounts of Chemical Research
Accounts of Chemical Research 化学-化学综合
CiteScore
31.40
自引率
1.10%
发文量
312
审稿时长
2 months
期刊介绍: Accounts of Chemical Research presents short, concise and critical articles offering easy-to-read overviews of basic research and applications in all areas of chemistry and biochemistry. These short reviews focus on research from the author’s own laboratory and are designed to teach the reader about a research project. In addition, Accounts of Chemical Research publishes commentaries that give an informed opinion on a current research problem. Special Issues online are devoted to a single topic of unusual activity and significance. Accounts of Chemical Research replaces the traditional article abstract with an article "Conspectus." These entries synopsize the research affording the reader a closer look at the content and significance of an article. Through this provision of a more detailed description of the article contents, the Conspectus enhances the article's discoverability by search engines and the exposure for the research.
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