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  5. Enantioselective Sulfonimidamide Acylation via a Cinchona Alkaloid-Catalyzed Desymmetrization: Scope, Data Science, and Mechanistic Investigation

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Article
en
2024

Enantioselective Sulfonimidamide Acylation via a Cinchona Alkaloid-Catalyzed Desymmetrization: Scope, Data Science, and Mechanistic Investigation

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en
2024
Vol 146 (12)
Vol. 146
DOI: 10.1021/jacs.4c00374

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Dean Toste
Dean Toste

University of California, Berkeley

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Brittany C. Haas
Ngiap‐Kie Lim
Janis Jermaks
+9 more

Abstract

Methods to access chiral sulfur(VI) pharmacophores are of interest in medicinal and synthetic chemistry. We report the desymmetrization of unprotected sulfonimidamides via asymmetric acylation with a cinchona-phosphinate catalyst. The desired products are formed in excellent yield and enantioselectivity with no observed bis-acylation. A data-science-driven approach to substrate scope evaluation was coupled to high throughput experimentation (HTE) to facilitate statistical modeling in order to inform mechanistic studies. Reaction kinetics, catalyst structural studies, and density functional theory (DFT) transition state analysis elucidated the turnover-limiting step to be the collapse of the tetrahedral intermediate and provided key insights into the catalyst-substrate structure-activity relationships responsible for the origin of the enantioselectivity. This study offers a reliable method for accessing enantioenriched sulfonimidamides to propel their application as pharmacophores and serves as an example of the mechanistic insight that can be gleaned from integrating data science and traditional physical organic techniques.

How to cite this publication

Brittany C. Haas, Ngiap‐Kie Lim, Janis Jermaks, Eden Gaster, Melody C. Guo, Thomas C. Malig, Jacob Werth, Haiming Zhang, Dean Toste, Francis Gosselin, Scott J. Miller, Matthew S. Sigman (2024). Enantioselective Sulfonimidamide Acylation via a Cinchona Alkaloid-Catalyzed Desymmetrization: Scope, Data Science, and Mechanistic Investigation. , 146(12), DOI: https://doi.org/10.1021/jacs.4c00374.

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Publication Details

Type

Article

Year

2024

Authors

12

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1021/jacs.4c00374

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