Molecular, functional and structural properties of the prolyl oligopeptidase of Trypanosoma cruzi (POP Tc80), which is required for parasite entry into mammalian cells

Author:

BASTOS Izabela M. D.1,GRELLIER Philippe2,MARTINS Natalia F.3,CADAVID-RESTREPO Gloria1,de SOUZA-AULT Marian R.1,AUGUSTYNS Koen4,TEIXEIRA Antonio R. L.1,SCHRÉVEL Joseph2,MAIGRET Bernard5,da SILVEIRA José F.6,SANTANA Jaime M.1

Affiliation:

1. Laboratório Multidisciplinar de Pesquisa em Doença de Chagas (CP 04536), Universidade de Brasília, 70919-970, Brasília, DF, Brazil

2. USM 0504, Département Régulations, Développement, Diversité Moléculaire, Muséum National d'Histoire Naturelle, 61 rue Buffon, 75231, Paris Cedex 05, France

3. Embrapa, Genetic Resources and Biotechnology, CP 02372, Brasília, DF, Brazil

4. Department of Medicinal Chemistry, The University of Antwerp, Belgium

5. Laboratoire de Chimie Théorique, Université de Nancy, 54506 Vandoeuvre-les-Nancy, France

6. Departamento de Microbiologia, Imunologia e Parasitologia, Escola Paulista de Medicina, R. Botucatu 862, CEP 04023-062, São Paulo, SP, Brazil

Abstract

We have demonstrated that the 80 kDa POP Tc80 (prolyl oligopeptidase of Trypanosoma cruzi) is involved in the process of cell invasion, since specific inhibitors block parasite entry into non-phagocytic mammalian host cells. In contrast with other POPs, POP Tc80 is capable of hydrolysing large substrates, such as fibronectin and native collagen. In this study, we present the cloning of the POPTc80 gene, whose deduced amino acid sequence shares considerable identity with other members of the POP family, mainly within its C-terminal portion that forms the catalytic domain. Southern-blot analysis indicated that POPTc80 is present as a single copy in the genome of the parasite. These results are consistent with mapping of POPTc80 to a single chromosome. The active recombinant protein (rPOP Tc80) displayed kinetic properties comparable with those of the native enzyme. Novel inhibitors were assayed with rPOP Tc80, and the most efficient ones presented values of inhibition coefficient Ki≤1.52 nM. Infective parasites treated with these specific POP Tc80 inhibitors attached to the surface of mammalian host cells, but were incapable of infecting them. Structural modelling of POP Tc80, based on the crystallized porcine POP, suggested that POP Tc80 is composed of an α/β-hydrolase domain containing the catalytic triad Ser548–Asp631–His667 and a seven-bladed β-propeller non-catalytic domain. Docking analysis suggests that triple-helical collagen access to the catalytic site of POP Tc80 occurs in the vicinity of the interface between the two domains.

Publisher

Portland Press Ltd.

Subject

Cell Biology,Molecular Biology,Biochemistry

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