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Photo Lynn Kamerlin

Lynn Kamerlin

Professor

Photo Lynn Kamerlin

The Competing Mechanisms of Phosphate Monoester Dianion Hydrolysis

Author

  • Fernanda Duarte
  • Alexandre Barrozo
  • Johan Åqvist
  • Nicholas H Williams
  • Shina C L Kamerlin

Summary, in English

Despite the numerous experimental and theoretical studies on phosphate monoester hydrolysis, significant questions remain concerning the mechanistic details of these biologically critical reactions. In the present work we construct a linear free energy relationship for phosphate monoester hydrolysis to explore the effect of modulating leaving group pKa on the competition between solvent- and substrate-assisted pathways for the hydrolysis of these compounds. Through detailed comparative electronic-structure studies of methyl phosphate and a series of substituted aryl phosphate monoesters, we demonstrate that the preferred mechanism is dependent on the nature of the leaving group. For good leaving groups, a strong preference is observed for a more dissociative solvent-assisted pathway. However, the energy difference between the two pathways gradually reduces as the leaving group pKa increases and creates mechanistic ambiguity for reactions involving relatively poor alkoxy leaving groups. Our calculations show that the transition-state structures vary smoothly across the range of pKas studied and that the pathways remain discrete mechanistic alternatives. Therefore, while not impossible, a biological catalyst would have to surmount a significantly higher activation barrier to facilitate a substrate-assisted pathway than for the solvent-assisted pathway when phosphate is bonded to good leaving groups. For poor leaving groups, this intrinsic preference disappears.

Publishing year

2016-08-24

Language

English

Pages

73-10664

Publication/Series

Journal of the American Chemical Society

Volume

138

Issue

33

Document type

Journal article

Publisher

The American Chemical Society (ACS)

Status

Published

ISBN/ISSN/Other

  • ISSN: 1520-5126