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The loops facing the active site of prolyl oligopeptidase are crucial components in substrate gating and specificity
Authors:Zoltá  n Szeltner,Tü  nde Juhá  sz,Ilona Szamosi,Dean Rea,Vilmos Fü    p,Ká  roly Mó  dos,Luiz Juliano,Lá  szló   Polgá  r
Affiliation:1. Institute of Enzymology, Research Centre for Natural Sciences, Hungarian Academy of Sciences, H-1025 Budapest, Pusztaszeri út 59‐67, Hungary;2. Department of Biological Sciences, University of Warwick, Gibbet Hill Road Coventry CV4 7AL, UK;3. Institute of Biophysics and Radiation Biology, Semmelweis University, Budapest, Hungary;4. Departamento de Biofísica, Universidade Federal de Sao Paulo, Brazil
Abstract:Prolyl oligopeptidase (POP) has emerged as a drug target for neurological diseases. A flexible loop structure comprising loop A (res. 189–209) and loop B (res. 577–608) at the domain interface is implicated in substrate entry to the active site. Here we determined kinetic and structural properties of POP with mutations in loop A, loop B, and in two additional flexible loops (the catalytic His loop, propeller Asp/Glu loop). POP lacking loop A proved to be an inefficient enzyme, as did POP with a mutation in loop B (T590C). Both variants displayed an altered substrate preference profile, with reduced ligand binding capacity. Conversely, the T202C mutation increased the flexibility of loop A, enhancing the catalytic efficiency beyond that of the native enzyme. The T590C mutation in loop B increased the preference for shorter peptides, indicating a role in substrate gating. Loop A and the His loop are disordered in the H680A mutant crystal structure, as seen in previous bacterial POP structures, implying coordinated structural dynamics of these loops. Unlike native POP, variants with a malfunctioning loop A were not inhibited by a 17-mer peptide that may bind non-productively to an exosite involving loop A. Biophysical studies suggest a predominantly closed resting state for POP with higher flexibility at the physiological temperature. The flexible loop A, loop B and His loop system at the active site is the main regulator of substrate gating and specificity and represents a new inhibitor target.
Keywords:Abz, 2-aminobenzoyl   BNA, β-naphthylamide   CD, circular dichroism   DLS, dynamic light scattering   DSC, differential scanning calorimetry   DTT, dithiothreitol   DTNB, 5,5'-dithiobis(2-nitrobenzoic acid)   EDTA, ethylenediaminetetraacetic acid   EDDnp, N-(2,4-dinitrophenyl)-ethylenediamine   MES, 4-morpholineethanesulfonic acid   MD, molecular dynamics   Ni-NTA, nickel-nitrilotriacetic acid   GSH, reduced glutathione   GSSG, oxidized glutathione   PAGE, polyacrylamide gel electrophoresis   PBS, phosphate buffered saline   PCR, polymerase chain reaction   POP, prolyl oligopeptidase   Phe(NO2), p-nitrophenylalanine   res., residue   SEC, size-exclusion chromatography   TEV, tobacco etch virus   Tm, melting temperature
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