Methionine residues lining the substrate pathway in prolyl oligopeptidase from Pleurotus eryngii play an important role in substrate recognition

Author:

Tokai Shota1,Bito Tomohiro2,Shimizu Katsuhiko3,Arima Jiro2

Affiliation:

1. The United Graduate School of Agricultural Sciences, Tottori University , Tottori, Japan

2. Faculty of Agriculture, Department of Agricultural, Biological and Environmental Sciences, Tottori University , Tottori, Japan

3. Organization for Regional Industrial Academic Cooperation, Tottori University , Tottori, Japan

Abstract

Abstract Family S9 prolyl oligopeptidases (POPs) are of interest as pharmacological targets. We recently found that an S9 POP from Pleurotus eryngii showed altered substrate specificity following H2O2 treatment. Oxidation of Met203 on the non-catalytic β-propeller domain resulted in decreased activity toward non-aromatic aminoacyl-para-nitroanilides (pNAs) while maintaining its activity toward aromatic aminoacyl-pNAs. Given that the other Met residues should also be oxidized by H2O2 treatment, we constructed mutants in which all the Met residues were substituted with other amino acids. Analysis of the mutants showed that Met570 in the catalytic domain is another potent residue for the altered substrate specificity following oxidation. Met203 and Met570 lie on the surfaces of two different domains and form part of a funnel from the surface to the active center. Our findings indicate that the funnel forms the substrate pathway and plays a role in substrate recognition.

Funder

Japan Society for the Promotion of Science

Sasakawa Scientific Research Grant from The Japan Science Society

Publisher

Oxford University Press (OUP)

Subject

Organic Chemistry,Molecular Biology,Applied Microbiology and Biotechnology,General Medicine,Biochemistry,Analytical Chemistry,Biotechnology

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