July 2018

Journal

Hyperconjugation Promotes Catalysis in a Pyridoxal 5′-Phosphate-Dependent Enzyme

By:
Dajnowicz, Steven ; Parks, Jerry M; Hu, Xiche; Johnston, Ryne C; Kovalevskyi, Andrii Y; Mueser, Timothy C
Journal Name:
ACS Catalysis
Page Number:
6733-6737
Volume:
8
Issue Number:
na
Publication Date:
July 3, 2018
View DOI Listing:
https://doi.org/10.1021/acscatal.8b01911

Abstract

Pyridoxal 5′-phosphate (PLP)-dependent enzymes facilitate reaction specificity by aligning the scissile σ-bond of the PLP-substrate covalent complex perpendicular to the ring of the cofactor. Current models propose that this alignment causes a destabilization of the ground state. To test this hypothesis, quantum chemical calculations, utilizing our recent neutron diffraction models of aspartate aminotransferase, were performed. The calculations reveal that the scissile σ-bond orbital overlaps significantly with the π* orbital of the Schiff base. This σ → π* hyperconjugation interaction stabilizes the ground state of the external aldimine and substantially contributes to transition-state stabilization by withdrawing electron density from the Cα-H σ bond into the π system of PLP, enhancing the rate of catalysis.