Vinyl and Alkynyl Substituted Heterocycles as Privileged Scaffolds in Transition Metal Promoted Stereoselective Synthesis

IF 16.4 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY Accounts of Chemical Research Pub Date : 2024-02-22 DOI:10.1021/acs.accounts.3c00760
Debasish Ghorai, Balázs L. Tóth, Matteo Lanzi and Arjan W. Kleij*, 
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Abstract

Biologically active compounds and pharmaceutically relevant intermediates often feature sterically congested stereogenic centers, in particular, carbon stereocenters that are either tertiary tetrasubstituted ones or quaternary in nature. Synthons that comprise such bulky and often structurally complex core units are of high synthetic value and represent important incentives for communities connected to drug discovery and development. Streamlined approaches that give access to a diverse set of compounds incorporating acyclic bulky stereocenters are relatively limited, though vital. They enable further exploration of three-dimensional entities that can be designed and implemented in discovery programs, thereby extending the pool of molecular properties that is inaccessible for flat molecules. However, the lack of modular substrates in particular areas of chemical space inspired us to consider functionalized heterocycles known as cyclic carbonates and carbamates as a productive way to create sterically crowded alkenes and stereocenters.

In this Account, we describe the major approximations we followed over the course of 8 years using transition metal (TM) catalysis as an instrument to control the stereochemical course of various allylic and propargylic substitution processes and related transformations. Allylic substitution reactions empowered by Pd-catalysis utilizing a variety of nucleophiles are discussed, with amination being the seed of all of this combined work. These procedures build on vinyl-substituted cyclic carbonates (VCCs) that are simple and easy-to-access precursors and highly modular in nature compared to synthetically limited vinyl oxiranes. Overall these decarboxylative conversions take place with either “linear” or “branched” regioselectivities that are ligand controlled and offer access to a wide scope of functional allylic scaffolds. Alternative approaches, including dual TM/photocatalyzed transformations, allowed us to expand the repertoire of challenging stereoselective conversions. This was achieved through key single-electron pathways and via formal umpolung of intermediates, resulting in new types of carbon–carbon bond formation reactions significantly expanding the scope of allylic substitution reactions.

Heterocyclic substrate variants that have triple bond functional groups were also designed by us to enable difficult-to-promote stereoselective propargylic substitution reactions through TM catalysis. In these processes, inspired by the Nishibayashi laboratory and their seminal findings in the area, we discovered various new reactivity patterns. This provided access to a range of different stereodefined building blocks such as 1,2-diborylated 1,3-dienes and tetrasubstituted α-allenols under Cu- or Ni-catalysis. In this realm, the use of lactone-derived substrates gives access to elusive chiral γ-amino acids and lactams with high stereofidelity and good structural diversity.

Apart from the synthetic efforts, we have elucidated some of the pertinent mechanistic manifolds operative in these transformations to better understand the limitations and opportunities with these specifically functionalized heterocycles that allowed us to create complex synthons. We combined both theoretical and experimental investigations that lead to several unexpected outcomes in terms of enantioinduction models, catalyst preactivation, and intermediates that are intimately connected to rationales for the observed selectivity profiles. The combined work we have communicated over the years offers insight into the unique reactivity of cyclic carbonates/carbamates acting as privileged precursors. It may inspire other members of the synthetic communities to widen the scope of precursors toward novel stereoselective transformations with added value in drug discovery and development in both academic and commercial settings.

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乙烯基和炔基取代的杂环作为过渡金属促进的立体选择性合成中的优势支架。
产品简介 生物活性化合物和医药相关中间体通常具有立体拥挤的立体中心,尤其是碳立体中心,要么是三元四取代的立体中心,要么是四元立体中心。由这种体积庞大、结构复杂的核心单位组成的合成物具有很高的合成价值,对与药物发现和开发相关的各界人士具有重要的激励作用。能够获得包含无环笨重立体中心的各种化合物的简化方法相对有限,但却至关重要。这些方法有助于进一步探索可在发现计划中设计和实施的三维实体,从而扩展平面分子无法获得的分子特性库。然而,由于在化学空间的特定领域缺乏模块化底物,我们开始考虑将被称为环状碳酸盐和氨基甲酸酯的功能化杂环作为一种富有成效的方法,来创造立体拥挤的烯烃和立体中心。在本报告中,我们介绍了我们在 8 年时间里利用过渡金属 (TM) 催化作为工具,控制各种烯丙基和丙炔基取代过程及相关转化的立体化学过程的主要近似方法。我们讨论了利用各种亲核物进行钯催化的烯丙基取代反应,其中胺化反应是所有这些综合工作的种子。这些过程以乙烯基取代的环状碳酸酯 (VCC) 为基础,与合成上受到限制的乙烯基环氧乙烷相比,VCC 是简单易得的前体,具有高度模块化的性质。总体而言,这些脱羧转换具有 "线性 "或 "支化 "区域选择性,受配体控制,并提供了广泛的功能性烯丙基支架。替代方法,包括双 TM/光催化转化,使我们能够扩大具有挑战性的立体选择性转化的范围。我们还设计了具有三键官能团的杂环底物变体,通过 TM 催化实现难以促进的立体选择性丙炔取代反应。在这些过程中,受 Nishibayashi 实验室及其在该领域开创性研究成果的启发,我们发现了各种新的反应模式。在铜或镍催化下,我们获得了一系列不同的立体结构单元,如 1,2-二烷基化 1,3-二烯和四取代的 α-烯醇。除了合成工作外,我们还阐明了这些转化过程中的一些相关机理,以便更好地理解这些特殊官能化杂环的局限性和机遇,从而创造出复杂的合成物。我们结合理论和实验研究,在对映体诱导模型、催化剂预活化和中间体方面取得了一些意想不到的成果,这些成果与观察到的选择性特征的原理密切相关。我们多年来的综合研究成果让我们深入了解了环状碳酸盐/氨基甲酸酯作为特异前体的独特反应性。它可能会激励合成界的其他成员拓宽前体的范围,以实现新的立体选择性转化,为学术界和商业界的药物发现和开发带来附加值。
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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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