Enolase: A Key Player in the Metabolism and a Probable Virulence Factor of Trypanosomatid Parasites—Perspectives for Its Use as a Therapeutic Target

Author:

Avilán Luisana1,Gualdrón-López Melisa2,Quiñones Wilfredo3,González-González Limari3,Hannaert Véronique2,Michels Paul A. M.2,Concepción Juan-Luis3

Affiliation:

1. Laboratorio de Fisiología, Facultad de Ciencias, Universidad de los Andes, 5101 Mérida, Venezuela

2. Research Unit for Tropical Diseases, de Duve Institute, TROP 74.39, Université catholique de Louvain, Avenue Hippocrate 74, 1200 Brussels, Belgium

3. Laboratorio de Enzimología de Parásitos, Facultad de Ciencias, Universidad de los Andes, 5101 Mérida, Venezuela

Abstract

Glycolysis and glyconeogenesis play crucial roles in the ATP supply and synthesis of glycoconjugates, important for the viability and virulence, respectively, of the human-pathogenic stages ofTrypanosoma brucei,Trypanosoma cruzi,andLeishmaniaspp. These pathways are, therefore, candidate targets for antiparasite drugs. The glycolytic/gluconeogenic enzyme enolase is generally highly conserved, with similar overall fold and identical catalytic residues in all organisms. Nonetheless, potentially important differences exist between the trypanosomatid and host enzymes, with three unique, reactive residues close to the active site of the former that might be exploited for the development of new drugs. In addition, enolase is found both in the secretome and in association with the surface ofLeishmaniaspp. where it probably functions as plasminogen receptor, playing a role in the parasite’s invasiveness and virulence, a function possibly also present in the other trypanosomatids. This location and possible function of enolase offer additional perspectives for both drug discovery and vaccination.

Funder

Fondo Nacional de Ciencia, Tecnología e Investigación

Publisher

Hindawi Limited

Subject

Molecular Biology,Biochemistry

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