Identification and Potential Roles of Human MicroRNAs in Ebola Virus Infection and Disease Pathogenesis.
Melvin Mensah-BonsuChristopher DossClay GlosterPerpetua M MugandaPublished in: Genes (2024)
Ebola virus (EBOV) is a highly pathogenic virus that causes a severe illness called Ebola virus disease (EVD). EVD has a high mortality rate and remains a significant threat to public health. Research on EVD pathogenesis has traditionally focused on host transcriptional responses. Limited recent studies, however, have revealed some information on the significance of cellular microRNAs (miRNAs) in EBOV infection and pathogenic mechanisms, but further studies are needed. Thus, this study aimed to identify and validate additional known and novel human miRNAs in EBOV-infected adult retinal pigment epithelial (ARPE) cells and predict their potential roles in EBOV infection and pathogenic mechanisms. We analyzed previously available small RNA-Seq data obtained from ARPE cells and identified 23 upregulated and seven downregulated miRNAs in the EBOV-infected cells; these included two novel miRNAs and 17 additional known miRNAs not previously identified in ARPE cells. In addition to pathways previously identified by others, these miRNAs are associated with pathways and biological processes that include WNT, FoxO, and phosphatidylinositol signaling; these pathways were not identified in the original study. This study thus confirms and expands on the previous study using the same datasets and demonstrates further the importance of human miRNAs in the host response and EVD pathogenesis during infection.
Keyphrases
- induced apoptosis
- rna seq
- cell cycle arrest
- endothelial cells
- single cell
- signaling pathway
- gene expression
- healthcare
- oxidative stress
- stem cells
- cell proliferation
- cardiovascular disease
- induced pluripotent stem cells
- transcription factor
- risk assessment
- early onset
- machine learning
- pi k akt
- risk factors
- big data
- pluripotent stem cells
- heat shock protein
- adverse drug
- health information
- heat stress
- case control