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Crystal structure, catalytic mechanism, and mitogenic properties of Trypanosoma cruzi proline racemase
Author(s) -
Alejandro Buschiazzo,
Maïra Goytia,
Francis Schaeffer,
Wim Degrave,
William Shepard,
Christophe Grégoire,
Nathalie Chamond,
Alain Cosson,
Armand Berneman,
Nicolas Coatnoan,
Pedro M. Alzari,
Paola Minóprio
Publication year - 2006
Publication title -
proceedings of the national academy of sciences of the united states of america
Language(s) - English
Resource type - Journals
eISSN - 1091-6490
pISSN - 0027-8424
DOI - 10.1073/pnas.0509010103
Subject(s) - trypanosoma cruzi , biochemistry , isomerase , enzyme , stereochemistry , active site , chemistry , lyase , biology , parasite hosting , world wide web , computer science
Amino acid racemases catalyze the stereoinversion of the chiral Cα to produce thed -enantiomers that participate in biological processes, such as cell wall construction in prokaryotes. Within this large protein family, bacterial proline racemases have been extensively studied as a model of enzymes acting with a pyridoxal-phosphate-independent mechanism. Here we report the crystal structure of the proline racemase from the human parasiteTrypanosoma cruzi (Tc PRACA), a secreted enzyme that triggers host B cell polyclonal activation, which prevents specific humoral immune responses and is crucial for parasite evasion and fate. The enzyme is a homodimer, with each monomer folded in two symmetric α/β subunits separated by a deep crevice. The structure ofTc PRACA in complex with a transition-state analog, pyrrole-2-carboxylic acid, reveals the presence of one reaction center per monomer, with two Cys residues optimally located to perform acid/base catalysis through a carbanion stabilization mechanism. Mutation of the catalytic Cys residues abolishes the enzymatic activity but preserves the mitogenic properties of the protein. In contrast, inhibitor binding promotes the closure of the interdomain crevice and completely abrogates B cell proliferation, suggesting that the mitogenic properties ofTc PRACA depend on the exposure of transient epitopes in the ligand-free enzyme.

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