Protein arginine methyltransferase (PRMT) is an important epigenetic regulator in eukaryotic cells. During encystation, an essential process for Acanthamoeba survival, the expression of a lot of genes involved in the encystation process has to be regulated in order to be induced or inhibited. However, the regulation mechanism of these genes is yet unknown. In this study, the full-length 1,059 bp cDNA sequence of Acanthamoeba castellanii PRMT1 (AcPRMT1) was cloned for the first time. The AcPRMT1 protein comprised of 352 amino acids with a SAM-dependent methyltransferase PRMT-type domain. The expression level of AcPRMT1 was highly increased during encystation of A. castellanii. The EGFPAcPRMT1 fusion protein was distributed over the cytoplasm, but it was mainly localized in the nucleus of Acanthamoeba. Knock down of AcPRMT1 by synthetic siRNA with a complementary sequence failed to form mature cysts. These findings suggested that AcPRMT1 plays a critical role in the regulation of encystation of A. castellanii. The target gene of AcPRMT1 regulation and the detailed mechanisms need to be investigated by further studies.
Citations
Citations to this article as recorded by
PRMT5 Inhibitor EPZ015666 Decreases the Viability and Encystment of Entamoeba invadens Rigoberto Ortiz-Hernández, Elmer Joel Millán-Casarrubias, Jeni Bolaños, Susana Munguía-Robledo, Carlos Vázquez-Calzada, Elisa Azuara-Licéaga, Jesús Valdés, Mario Alberto Rodríguez Molecules.2024; 30(1): 62. CrossRef
Comparative analysis of differentially expressed genes in Acanthamoeba after ingestion of Legionella pneumophila and Escherichia coli Eun-Kyung Moon, Min-Jeong Kim, Hae-Ahm Lee, Fu-Shi Quan, Hyun-Hee Kong Experimental Parasitology.2022; 232: 108188. CrossRef
Drug Discovery against Acanthamoeba Infections: Present Knowledge and Unmet Needs Hany M. Elsheikha, Ruqaiyyah Siddiqui, Naveed Ahmed Khan Pathogens.2020; 9(5): 405. CrossRef
Free-living amoebae and squatters in the wild: ecological and molecular features Ascel Samba-Louaka, Vincent Delafont, Marie-Hélène Rodier, Estelle Cateau, Yann Héchard FEMS Microbiology Reviews.2019; 43(4): 415. CrossRef