Peer-reviewed veterinary case report
Conversion of Inactive Non-Pro1 Tautomerase Superfamily Members into Active Tautomerases: Analysis of the Pro1 Mutants.
- Year:
- 2025
- Authors:
- Lancaster EB et al.
- Affiliation:
- College of Pharmacy · United States
- Species:
- cat
Abstract
Pro1 is a critical catalytic residue in the characterized activities of tautomerase superfamily (TSF) members. Only a handful of members (∼346) lack Pro1 in a sequence similarity network (SSN) that consists of over 11,000 members. Most (294 members) are in the malonate semialdehyde decarboxylase (MSAD)-like subgroup, but the ones characterized thus far have little or no MSAD activity. Moreover, there is little to no activity with other TSF substrates. Five non-Pro1 members were selected randomly for kinetic [using phenylenolpyruvate (PP) and 2-hydroxymuconate (2HM)], mutagenic, inhibition, and crystallographic analysis. Using PP, <i>k</i><sub>cat</sub>/<i>K</i><sub>m</sub> values (∼10<sup>1</sup>-10<sup>2</sup> M<sup>-1</sup> s<sup>-1</sup>) could be estimated for three native proteins whereas using 2HM, a <i>k</i><sub>cat</sub>/<i>K</i><sub>m</sub> value could only be estimated for one native protein (∼10<sup>3</sup> M<sup>-1</sup> s<sup>-1</sup>). The <i>k</i><sub>cat</sub> and <i>K</i><sub>m</sub> values could not be determined. However, changing the N-terminal residue to a proline gave a significant improvement in <i>k</i><sub>cat</sub>/<i>K</i><sub>m</sub> values for all mutant enzymes using PP or 2HM. For PP, the <i>k</i><sub>cat</sub>/<i>K</i><sub>m</sub> values ranged from 10<sup>3</sup>-10<sup>5</sup> M<sup>-1</sup> s<sup>-1</sup> and for 2HM, the <i>k</i><sub>cat</sub>/<i>K</i><sub>m</sub> values ranged from 10<sup>2</sup>-10<sup>4</sup> M<sup>-1</sup> s<sup>-1</sup>. In addition, it was now possible to measure <i>k</i><sub>cat</sub> and <i>K</i><sub>m</sub> values for all mutant proteins using PP and one mutant protein using 2HM. Incubation of the Pro1 mutants with 3-bromopropiolate (3BP) results in covalent modification of the prolyl nitrogen of Pro1 by a 3-oxopropanoate adduct. Crystallographic analysis of two mutant enzymes (NJ7V1P and 8U6S1P) modified by the 3-oxopropanoate adduct identified binding ligands and suggest a mechanism for the tautomerase activity involving Pro1, Arg71, Tyr124, and the backbone amide of Phe68.
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Search related cases →Original publication: https://europepmc.org/article/MED/39914393