Genome-Wide Classification of Myb Domain-Containing Protein Families in Entamoeba invadens

Author:

Cuellar Patricia1,Castañeda-Ortiz Elizabeth J.1,Rosales-Zarza César2,Martínez-Rodríguez Carlos E.3,Canela-Pérez Israel4,Rodríguez Mario Alberto5ORCID,Valdés Jesús4ORCID,Azuara-Liceaga Elisa1ORCID

Affiliation:

1. Posgrado en Ciencias Genómicas, Universidad Autónoma de la Ciudad de México, Mexico City C.P. 03100, Mexico

2. Licenciatura Ciencias Genómicas, Universidad Autónoma de la Ciudad de México, Mexico City C.P. 03100, Mexico

3. Academia de Matemáticas, Universidad Autónoma de la Ciudad de México, Mexico City C.P. 09790, Mexico

4. Departamento de Bioquímica, CINVESTAV-IPN, Mexico City C.P. 07360, Mexico

5. Departamento de Infectómica y Patogénesis Molecular, CINVESTAV-IPN, Mexico City C.P. 07360, Mexico

Abstract

Entamoeba histolytica, the causative agent of amebiasis, is the third leading cause of death among parasitic diseases globally. Its life cycle includes encystation, which has been mostly studied in Entamoeba invadens, responsible for reptilian amebiasis. However, the molecular mechanisms underlying this process are not fully understood. Therefore, we focused on the identification and characterization of Myb proteins, which regulate the expression of encystation-related genes in various protozoan parasites. Through bioinformatic analysis, we identified 48 genes in E. invadens encoding MYB-domain-containing proteins. These were classified into single-repeat 1R (20), 2R-MYB proteins (27), and one 4R-MYB protein. The in-silico analysis suggests that these proteins are multifunctional, participating in transcriptional regulation, chromatin remodeling, telomere maintenance, and splicing. Transcriptomic data analysis revealed expression signatures of eimyb genes, suggesting a potential orchestration in the regulation of early and late encystation–excystation genes. Furthermore, we identified probable target genes associated with reproduction, the meiotic cell cycle, ubiquitin-dependent protein catabolism, and endosomal transport. In conclusion, our findings suggest that E. invadens Myb proteins regulate stage-specific proteins and a wide array of cellular processes. This study provides a foundation for further exploration of the molecular mechanisms governing encystation and unveils potential targets for therapeutic intervention in amebiasis.

Funder

CONAHCYT

CCyT-UACM

Publisher

MDPI AG

Subject

Genetics (clinical),Genetics

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