4.7 Article

Catalysis of Hydrogen-Deuterium Exchange Reactions by 4-Substituted Proline Derivatives

Journal

JOURNAL OF ORGANIC CHEMISTRY
Volume 84, Issue 3, Pages 1247-1256

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.joc.8b02644

Keywords

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Funding

  1. School of Chemistry, NUI Galway
  2. Molecular and Cellular Pharmacology Training Grant [T32 GM008688]
  3. American Heart Association [09PRE2260125]
  4. NIH [R01 AR044276, R01 GM044783, P41 GM103399]

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The identification and understanding of structure-activity relationships is vital for rational catalyst design. A kinetic study of the hydrogen-deuterium exchange reaction of cyclohexanone in aqueous solution, as catalyzed by proline derivatives, has revealed valuable structure-activity relationships. In phosphate-buffered solution, cis-4-fluoroproline is more active than the trans isomer, a distinction that appears to originate from a destabilizing interaction between the fluorine atom and phosphate anion during general acid-catalyzed dehydration of the carbinolamine intermediate. trans-4-Ammoniumprolines are exceptionally active catalysts owing to favorable Coulombic interactions involving the ammonium group and the alkoxide moiety formed upon 1,2-addition of the proline derivative to the ketone. These results could be used for the optimization of proline catalysts, especially in transformations where the formation of the putative iminium ion is rate-limiting.

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