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Published on: April 19, 2017
Expression of immune response genes in human corneal epithelial cells interacting with Aspergillus flavus conidia
Divya Arunachalam1,2, Shruthi Mahalakshmi Ramanathan1, Athul Menon3
1Proteomics Department, Aravind Medical Research Foundation, Dr. G. Venkataswamy Eye Research Institute, Aravind Eye Care System, Madurai, Tamil Nadu, India.
Background:
Aspergillus flavus, one of the causative agents of human fungal keratitis, can be phagocytosed by human corneal epithelial (HCE) cells and the conidia containing phagosomes mature into phagolysosomes. But the immunological responses of human corneal epithelial cells interacting with A. flavus are not clear. In this study, we report the expression of immune response related genes of HCE cells exposed to A. flavus spores using targeted transcriptomics.
Methods:
Human corneal epithelial cell line and primary cultures were grown in a six-well plate and used for coculture experiments. Internalization of the conidia was confirmed by immunofluorescence microscopy of the colocalized endosomal markers CD71 and LAMP1. Total RNA was isolated, and the quantity and quality of the isolated RNA were assessed using Qubit and Bioanalyzer. NanoString nCounter platform was used for the analysis of mRNA abundance using the Human Immunology panel. R-package and nSolver software were used for data analysis. KEGG and FunRich 3.1.3 tools were used to analyze the differentially expressed genes.
Results:
Different morphotypes of conidia were observed after 6 h of coculture with human corneal epithelial cells and found to be internalized by epithelial cells. NanoString profiling showed more than 20 differentially expressed genes in immortalized human corneal epithelial cell line and more than ten differentially expressed genes in primary corneal epithelial cells. Distinct set of genes were altered in their expression in cell line and primary corneal epithelial cells. KEGG pathway analysis revealed that genes associated with TNF signaling, NF-KB signaling, and Th17 signaling were up-regulated, and genes associated with chemokine signaling and B cell receptor signaling were down regulated. FunRich pathway analysis showed that pathways such as CDC42 signaling, PI3K signaling, and Arf6 trafficking events were activated by the clinical isolates CI1123 and CI1698 in both type of cells.
Conclusions:
Combining the transcript analysis data from cell lines and primary cultures, we showed the up regulation of immune defense genes in A. flavus infected cells. At the same time, chemokine signaling and B cell signaling pathways are downregulated. The variability in the expression levels in the immortalized cell line and the primary cultures is likely due to the variable epigenetic reprogramming in the immortalized cells and primary cultures in the absence of any changes in the genome. It highlights the importance of using both cell types in host-pathogen interaction studies.
Insights
Human corneal epithelial cells respond to Aspergillus flavus by upregulating immune defense genes, while downregulating chemokine and B cell signaling pathways. This study highlights the importance of using both cell lines and primary cultures for accurate host-pathogen interaction research.
Area of Science:
- Ophthalmology
- Immunology
- Mycology
Background:
- Aspergillus flavus is a cause of human fungal keratitis.
- Human corneal epithelial (HCE) cells internalize A. flavus conidia.
- The immune responses of HCE cells to A. flavus are not fully understood.
Purpose of the Study:
- To investigate the immune response gene expression of HCE cells upon exposure to A. flavus spores.
- To identify key signaling pathways involved in the HCE cell interaction with A. flavus.
Main Methods:
- Coculture of HCE cell line and primary cultures with A. flavus.
- Confirmation of conidia internalization via immunofluorescence microscopy.
- Targeted transcriptomic analysis using the NanoString nCounter platform and Human Immunology panel.
- Bioinformatic analysis of differentially expressed genes using KEGG and FunRich tools.
Main Results:
- Over 20 differentially expressed genes in the HCE cell line and over 10 in primary cultures were identified.
- Upregulation of TNF, NF-KB, and Th17 signaling pathways.
- Downregulation of chemokine and B cell receptor signaling pathways.
- Activation of CDC42, PI3K, and Arf6 signaling pathways by clinical A. flavus isolates.
Conclusions:
- HCE cells exhibit an immune defense gene upregulation when infected with A. flavus.
- Chemokine and B cell signaling pathways are downregulated during A. flavus infection.
- Variability in gene expression between cell lines and primary cultures underscores the need for using both in host-pathogen studies.
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