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采用量子导向分子力学预测 Pd 催化的 1,4-共轭加成的立体选择性。

Stereoselectivity Predictions for the Pd-Catalyzed 1,4-Conjugate Addition Using Quantum-Guided Molecular Mechanics.

机构信息

Department of Chemistry and Biochemistry, University of Notre Dame, Notre Dame, Indiana 46556, United States.

Data Science and Modelling, Pharmaceutical Sciences, R&D, AstraZeneca Gothenburg, Pepparedsleden 1, SE-431 83 Mölndal, Sweden.

出版信息

J Org Chem. 2021 Apr 16;86(8):5660-5667. doi: 10.1021/acs.joc.1c00136. Epub 2021 Mar 26.

Abstract

The conjugate addition of aryl boronic acids to enones is a powerful synthetic tool to introduce quaternary chiral centers, but the experimentally observed stereoselectivities vary widely, and the identification of suitable substrate-ligand combinations requires significant effort. We describe the development and application of a transition-state force field (TSFF) by the quantum-guided molecular mechanics (Q2MM) method that is validated using an automated screen of 9 ligands, 38 aryl boronic acids, and 22 enones, leading to a MUE of 1.8 kJ/mol and a value of 0.877 over 82 examples. A detailed error analysis identified the structural origin for the deviations in the small group of outliers. The TSFF was then used to predict the stereoselectivity for 27 ligands and 59 enones. The vast majority of the virtual screening results are in line with the expected results. Selected results for 6-substituted pyrox ligands, which were not part of the training set, were followed up by density functional theory and experimental studies.

摘要

芳基硼酸与烯酮的共轭加成是引入季手性中心的有力合成工具,但实验观察到的立体选择性差异很大,需要大量的努力来确定合适的底物-配体组合。我们描述了通过量子引导分子力学(Q2MM)方法开发和应用过渡态力场(TSFF)的情况,该方法通过对 9 种配体、38 种芳基硼酸和 22 种烯酮的自动筛选进行了验证,导致 MUE 为 1.8 kJ/mol, 值为 0.877,涵盖了 82 个实例。详细的误差分析确定了少数异常值偏差的结构起源。然后,该 TSFF 用于预测 27 种配体和 59 种烯酮的立体选择性。虚拟筛选结果的绝大多数与预期结果一致。对不属于训练集的 6-取代吡咯烷配体的选定结果进行了密度泛函理论和实验研究。

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本文引用的文献

1
Transition State Force Field for the Asymmetric Redox-Relay Heck Reaction.不对称氧化还原接力 Heck 反应的过渡态力场。
J Am Chem Soc. 2020 May 27;142(21):9700-9707. doi: 10.1021/jacs.0c01979. Epub 2020 May 14.

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