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Trichomonas vaginalis metalloproteinase TvMP50 is a monomeric Aminopeptidase P-like enzyme
Authors:Rodrigo Arreola  José Luis Villalpando  Jonathan Puente-Rivera  Jorge Morales-Montor  Enrique Rudiño-Piñera  María Elizbeth Alvarez-Sánchez
Affiliation:1.Psychiatric Genetics Department, Clinical Research Branch, National Institute of Psychiatry,Ramón de la Fuente,Mexico City,Mexico;2.Posgrado en Ciencias Genómicas,Universidad Autónoma de la Ciudad de México (UACM),Mexico City,Mexico;3.Departamento de Inmunología, Instituto de Investigaciones Biomédicas,Universidad Nacional Autónoma de México,Mexico City,Mexico;4.Departamento de Medicina Molecular y Bioprocesos, Instituto de Biotecnología,Universidad Nacional Autónoma de México,Cuernavaca,Mexico
Abstract:Previously, metalloproteinase was isolated and identified from Trichomonas vaginalis, belonging to the aminopeptidase P-like metalloproteinase subfamily A/B, family M24 of clan MG, named TvMP50. The native and recombinant TvMP50 showed proteolytic activity, determined by gelatin zymogram, and a 50 kDa band, suggesting that TvMP50 is a monomeric active enzyme. This was an unexpected finding since other Xaa-Pro aminopeptidases/prolidases are active as a biological unit formed by dimers/tetramers. In this study, the evolutionary history of TvMP50 and the preliminary crystal structure of the recombinant enzyme determined at 3.4 Å resolution is reported. TvMP50 was shown to be a type of putative, eukaryotic, monomeric aminopeptidase P, and the crystallographic coordinates showed a monomer on a “pseudo-homodimer” array on the asymmetric unit that resembles the quaternary structure of the M24B dimeric family and suggests a homodimeric aminopeptidase P-like enzyme as a likely ancestor. Interestingly, TvMP50 had a modified N-terminal region compared with other Xaa-Pro aminopeptidases/prolidases with three-dimensional structures; however, the formation of the standard dimer is structurally unstable in aqueous solution, and a comparably reduced number of hydrogen bridges and lack of saline bridges were found between subunits A/B, which could explain why TvMP50 portrays monomeric functionality. Additionally, we found that the Parabasalia group contains two protein lineages with a “pita bread” fold; the ancestral monomeric group 1 was probably derived from an ancestral dimeric aminopeptidase P-type enzyme, and group 2 has a probable dimeric kind of ancestral eukaryotic prolidase lineage. The implications of such hypotheses are also presented.
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