Evolutionary Effects on Bound Substrate p K a in Dihydrofolate Reductase

Anil R. Mhashal, Yaron Pshetitsky, Christopher M. Cheatum, Amnon Kohen, Dan Thomas Major

Research output: Contribution to journalArticlepeer-review

16 Scopus citations

Abstract

In the present study, we address the effect of active site structure and dynamics of different dihydrofolate reductase (DHFR) isoforms on the pK a of the bound substrate 7,8-dihydrofolate, in an attempt to understand possible evolutionary trends. We apply a hybrid QM/MM free energy perturbation method to estimate the pK a of the N5 position of the bound substrate. We observe a gradual increase in N5 basicity as we move from primitive to more evolved DHFR isoforms. Structural analysis of these isoforms reveals a gradual sequestering of water molecules from the active site in the more evolved enzymes, thereby modulating the local dielectric environment near the substrate. Furthermore, the present study reveals a clear correlation between active site hydration and the N5 pK a of the substrate. We emphasize the role of the M20 loop in controlling the active site hydration level, via a preorganized active site with a more hydrophobic environment and reduced loop flexibility as evolution progresses from bacterial to the human enzyme.

Original languageEnglish
Pages (from-to)16650-16660
Number of pages11
JournalJournal of the American Chemical Society
Volume140
Issue number48
DOIs
StatePublished - 5 Dec 2018

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© 2018 American Chemical Society.

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