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饱和杂环光介导的环收缩反应中对映选择性的探究。

Interrogation of Enantioselectivity in the Photomediated Ring Contractions of Saturated Heterocycles.

作者信息

Kim Sojung F, Liles Jordan P, Lux Michaelyn C, Park Hojoon, Jurczyk Justin, Soda Yasuki, Yeung Charles S, Sigman Matthew S, Sarpong Richmond

机构信息

Department of Chemistry, University of California, Berkeley, Berkeley, California 94720, United States.

Department of Chemistry, University of Utah, Salt Lake City, Utah 84112, United States.

出版信息

J Am Chem Soc. 2025 Jan 15;147(2):1851-1866. doi: 10.1021/jacs.4c13999. Epub 2025 Jan 2.

Abstract

We recently reported a chiral phosphoric acid (CPA) catalyzed enantioselective photomediated ring contraction of piperidines and other saturated heterocycles. By extruding a single heteroatom from a ring, this transformation builds desirable C(sp)-C(sp) bonds in the ring contracted products; however, the origins of enantioselectivity remain poorly understood. In this work, enantioselectivity of the ring contraction has been explored across an expanded structurally diverse substrate scope, revealing a wide range of enantioselectivities (0-99%) using two distinct CPA catalysts. Mechanistic investigations support rate-determining excitation that generates short-lived achiral intermediates that are intercepted by the CPA in an enantiodetermining ring closure. The effects of competitive uncatalyzed reactivity and light-driven reversibility of the enantiodetermining ring closure on enantioselectivity have been elucidated. Statistical models were built by regressing the range of enantioselectivities from the substrate scope against key structural features of the products for both CPA catalysts. The resultant models suggested distinct factors that influence the enantioselectivity response for each catalyst and enabled rational modification of a pharmaceutically relevant target molecule to improve enantioselectivity. Finally, density functional theory (DFT)-based transition state analysis identified distinct noncovalent interactions with each catalyst that correlated with the unique selectivity-relevant features uncovered through statistical modeling. Our findings not only offer comprehensive insight into the origins of enantioselectivity in this system but should also aid future development of related photomediated CPA-catalyzed reactions.

摘要

我们最近报道了一种手性磷酸(CPA)催化的哌啶及其他饱和杂环的对映选择性光介导环收缩反应。通过从环中挤出一个杂原子,这种转化在环收缩产物中构建了理想的C(sp)-C(sp)键;然而,对映选择性的起源仍知之甚少。在这项工作中,我们在结构多样的底物范围内探索了环收缩反应的对映选择性,结果表明使用两种不同的CPA催化剂可实现广泛的对映选择性(0-99%)。机理研究支持速率决定步骤为激发过程,该过程产生短寿命的非手性中间体,这些中间体在对映体决定的闭环反应中被CPA拦截。我们阐明了竞争性的非催化反应性以及对映体决定的闭环反应的光驱动可逆性对对映选择性的影响。通过将底物范围内的对映选择性范围与两种CPA催化剂产物的关键结构特征进行回归分析,建立了统计模型。所得模型揭示了影响每种催化剂对映选择性响应的不同因素,并能够对与药物相关的目标分子进行合理修饰以提高对映选择性。最后,基于密度泛函理论(DFT)的过渡态分析确定了与每种催化剂不同的非共价相互作用,这些相互作用与通过统计建模发现的独特的选择性相关特征相关。我们的研究结果不仅为该体系中对映选择性的起源提供了全面的见解,也应为未来相关光介导的CPA催化反应的发展提供帮助。

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