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Ameson portunus infection is associated with RK13 mitochondrial abnormalities
Min Zhou1, Zixuan Yang1, Xintong Zhang1
1The Laboratory of Aquatic Parasitology and Microbial Resources, School of Marine Science and Engineering, Qingdao Agricultural University, Qingdao, Shandong 266237, China.
Abstract:
Microsporidia are obligate intracellular parasites with an extremely broad host range from invertebrates to vertebrates. Although host mitochondria were proved to be critical for the intracellular survival and propagation, their precise morphological and functional variation during microsporidian infection remain largely unclear. In this study, we firstly developed a feasible approach to track microsporidia proliferation by using a live-cell fluorescent dye DiI in the Ameson portunus-RK13 model. DiI-labeled A. portunus was observed to be surround by host mitochondria at 6 hpi (hours post infection) and gradually induced mitochondrial fragmentation in RK13 cells at 8 dpi (days post infection). Ultrastructural observation further revealed some mitochondria exhibited distinct swelling, and dissolution and fragmentation of cristae. Then, RNA sequencing of A. portunus-infected and uninfected RK13 cells at 8 dpi was employed to uncover the possible mechanisms underlying these mitochondrial abnormities. GSEA analysis revealed 11 mitochondrial structure- and function-related process were upregulated upon the infection of A. portunus. The expression alteration of genes related to mitochondrial fusion and fission might contribute to mitochondrial fragmentation, and the upregulation of genes encoding the components of mitochondrial respiratory chain and ATPsynthesiscoupledprotontransport implied the increase of ATP production upon microsporidian infection. Upregulated expression of genes associated with the maintenance of mitochondrial morphology was possibly associated with mitochondrial swelling, and cristae dissolution and fragmentation. The upregulation of genes involved in mitophagy and mitochondrial protein biosynthesis was suggested to be involved in the maintenance of mitochondrial homeostasis against the infection. Collectively, our findings provide further information on the host mitochondria-involved pathophysiological responses to this microsporidian infection.
Insights
Microsporidian infection alters host mitochondria, causing fragmentation and swelling. Gene expression changes suggest increased ATP production and complex responses to maintain mitochondrial health during infection.
Area of Science:
- Parasitology
- Cell Biology
- Mitochondrial Biology
Background:
- Microsporidia are obligate intracellular parasites impacting diverse hosts.
- Host mitochondria are crucial for microsporidia, but their changes during infection are poorly understood.
Purpose of the Study:
- To investigate morphological and functional changes in host mitochondria during microsporidian infection.
- To elucidate the molecular mechanisms underlying these mitochondrial alterations.
Main Methods:
- Developed a DiI live-cell fluorescent dye tracking method for microsporidia proliferation.
- Utilized transmission electron microscopy for ultrastructural analysis.
- Performed RNA sequencing and Gene Set Enrichment Analysis (GSEA) on infected cells.
Main Results:
- Microsporidia induced mitochondrial fragmentation, swelling, and cristae dissolution in host cells.
- Gene expression analysis revealed upregulation of 11 mitochondrial structure/function pathways.
- Changes in genes related to mitochondrial dynamics, ATP production, morphology maintenance, mitophagy, and protein biosynthesis were observed.
Conclusions:
- Microsporidian infection significantly impacts host mitochondrial morphology and function.
- Host cells activate complex molecular responses, including increased ATP production and mitophagy, to cope with infection.
- Findings offer insights into host-parasite interactions at the mitochondrial level.
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