Please use this identifier to cite or link to this item: http://sgc.anlis.gob.ar/handle/123456789/2705
Title: First In Silico Study of Two Echinococcus granulosus Glyceraldehyde-3-Phosphate Dehydrogenase Isoenzymes Recognized by Liver Cystic Echinococcosis Human Sera
Authors: Agüero, Facundo A 
Maglioco, Andrea 
Valacco, María Pía 
Juárez Valdez, Alejandra Yaqueline 
Roldán, Emilio 
Paulino, Margot 
Fuchs, Alicia G 
Keywords: Echinococcus granulosus;Reacción en Cadena de la Polimerasa;Equinococosis;Epítopos;Zoonosis
Issue Date: 31-Oct-2025
Abstract: 
Cystic echinococcosis (CE) is an endemic zoonotic disease caused by Echinococcus granulosus,
which forms cysts in ungulates’ intermediate hosts. Humans are accidental hosts, and CE
affects more than one million people worldwide. Imaging remains the diagnostic gold
standard, outperforming serological methods. This study presents an in silico analysis of
two glyceraldehyde-3-phosphate dehydrogenase (GAPDH) isoenzymes from E. granulosus
(EgGAPDH), isolated from a parasite cell line (EGPE). EgGAPDHs were recognized by
sera from CE patients, identified through LC-MS/MS and PCR of metacestodes from cattle
liver. One isoenzyme is intracellular (IC) (UniProt: W6UJ19), and the other is extracellular
(EC) (UniProt: W6V1T8). GAPDH is involved in host–parasite interactions and metabolic
processes. We characterized the physicochemical properties; linear epitopes (LEPs); and
amino acid domains of EgGAPDH, its hosts, and other parasites. W6UJ19 emerged as the
most promising isoenzyme as a marker of infection. Molecular dynamics simulations of
isoenzymes, performed in the presence or absence of two bisphosphonates (BPs), revealed
how drug binding alters conformational epitopes (CEPs) and suggested that W6UJ19 is
more responsive to BP modulation. Binding affinity analysis using the MMPBSA method
revealed that etidronate (EHDP) binds EgGAPDH with greater affinity than phosphate (Pi)
and alendronate (AL), in the following order: EHDP > Pi > AL.
Description: 
Fil: Agüero, Facundo A. Centro de Altos Estudios en Ciencias Humanas y de la Salud, Universidad Abierta Interamericana; Buenos Aires, Argentina. Consejo Nacional de Investigaciones Científicas y Técnicas; Buenos Aires, Argentina.

Fill: Maglioco, Andrea. Centro de Altos Estudios en Ciencias Humanas y de la Salud, Universidad Abierta Interamericana; Buenos Aires, Argentina. Consejo Nacional de Investigaciones Científicas y Técnicas; Buenos Aires, Argentina.

Fill: Valacco, María Pía. Consejo Nacional de Investigaciones Científicas y Técnicas; Buenos Aires, Argentina. Centro de Estudios Químicos y Biológicos por Espectrometría de Masa, Facultad de Ciencias Exactas y
Naturales, Universidad de Buenos Aires; Buenos Aires, Argentina.

Fill: Juárez Valdez, Alejandra Yaqueline. Consejo Nacional de Investigaciones Científicas y Técnicas; Buenos Aires, Argentina. Instituto Nacional de Parasitología “Dr. Mario Fatala-Chaben”, Administración Nacional de Salud “Dr. Carlos Malbrán”; Buenos Aires, Argentina.

Fill: Roldán, Emilio. Centro de Altos Estudios en Ciencias Humanas y de la Salud, Universidad Abierta Interamericana; Buenos Aires, Argentina

Fill: Paulino, Margot. Facultad de Química, Departamento de Experimentación y Teoría de la Materia y sus Aplicaciones, Área
Bioinformática, Universidad de la República; Montevideo, Uruguay.

Fill: Fuchs, Alicia G. Centro de Altos Estudios en Ciencias Humanas y de la Salud, Universidad Abierta Interamericana; Buenos Aires, Argentina. Instituto Nacional de Parasitología “Dr. Mario Fatala-Chaben”, Administración Nacional de Salud “Dr. Carlos Malbrán”; Buenos Aires, Argentina.
URI: http://sgc.anlis.gob.ar/handle/123456789/2705
DOI: 10.3390/ijms262110622
Appears in Collections:Publicaciones INP

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