Selective Phosphorylation of Phenols and Benzenediols by the Kinase PsiK and Variants Thereof

A Ahram Kim (Department of Chemistry Indiana University Bloomington Indiana 47405 USA) N Nicolás M. Morato (Purdue Institute for Cancer Research, Purdue University, 201 S. University Street, West Lafayette, Indiana 47907, United States) P Prabir Saha (Department of Chemistry Indiana University Bloomington Indiana 47405 USA) P Pascal N. Eyimegwu (Process Research and Development) A Aqeel A. Niyaz (Department of Chemistry Indiana University Bloomington Indiana 47405 USA) R Rui Huang (School of Chemistry) R R. Graham Cooks (Department of Chemistry, Purdue University, 560 Oval Drive, West Lafayette, Indiana 47907, United States) R Ryan M. Phelan (Process Research and Development AbbVie Inc. North Chicago Illinois 60064 USA) J Jared C. Lewis (Department of Chemistry)

Abstract

Abstract Phosphorylation plays important roles in biology by modulating the structure, reactivity, and biological function of a broad range of molecules. Biocatalytic phosphorylation has attracted attention from synthetic chemists due to its selectivity and mild reaction conditions using ATP as a phosphate donor. Given the potential synthetic utility of kinases with activity on small molecule substrates, we explored the activity of PsiK, the enzyme responsible for selective 4‐ O ‐phosphorylation of 4‐hydroxytryptamine or psilocin in psylocybin biosynthesis by Psilocybe cubensis . We find that PsiK has good activity on a range of substituted phenols and benzenediols beyond its native substrate, enabling preparative phosphorylation of different substrates, and substantially expands the substrate scope of biocatalytic phosphorylation. We also show that active site mutations can further expand substrate scope and improve site‐selectivity. This engineering effort was greatly expedited using DESI‐MS screening, which enabled analysis of 2688 reactions in only 40 min. Finally, gram‐scale phosphorylation of a representative substrate was achieved with a turnover number over 10 000. Together, these results highlight the biocatalytic utility of PsiK and derivatives thereof for selective phosphorylation of phenols and benzenediols under mild conditions.

Article Details

Volume / Issue Vol. 64, Issue 34
Published August 18, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (9)

A

Ahram Kim

Department of Chemistry Indiana University Bloomington Indiana 47405 USA

N

Nicolás M. Morato

Purdue Institute for Cancer Research, Purdue University, 201 S. University Street, West Lafayette, Indiana 47907, United States

P

Prabir Saha

Department of Chemistry Indiana University Bloomington Indiana 47405 USA

P

Pascal N. Eyimegwu

Process Research and Development

A

Aqeel A. Niyaz

Department of Chemistry Indiana University Bloomington Indiana 47405 USA

R

Rui Huang

School of Chemistry

R

R. Graham Cooks

Department of Chemistry, Purdue University, 560 Oval Drive, West Lafayette, Indiana 47907, United States

R

Ryan M. Phelan

Process Research and Development AbbVie Inc. North Chicago Illinois 60064 USA

J

Jared C. Lewis

Department of Chemistry