Affiliation:
1. Museum and Institute of Zoology, Polish Academy of Science, Wilcza 64, 00-679 Warsaw, Poland
2. Witold Stefański Institute of Parasitology, Polish Academy of Sciences, Twarda 51/55, 00-875 Warsaw, Poland
3. Biomibo, 04-872 Warsaw, Poland
Abstract
Mitochondria have been shown to play an important role in apoptosis using mammalian cell lines. However, their role in insects is not fully understood; thus, more indepth studies of insect cell apoptosis are necessary. The present study investigates mitochondrial involvement during Conidiobolus coronatus-induced apoptosis in Galleria mellonella hemocytes. Previous research has shown that fungal infection could induce apoptosis in insect hemocytes. Our findings indicate that mitochondria undergo several morphological and physiological changes during fungal infection, e.g., loss of mitochondrial membrane potential, megachannel formation, disturbances in intracellular respiration, increased nonrespiratory oxygen consumption in mitochondria, decreased ATP-coupled oxygen consumption and increased non-ATP–coupled oxygen consumption, decreased extracellular and intracellular oxygen consumption, and increased extracellular pH. Our findings confirm that G. mellonella immunocompetent cells demonstrate Ca2+ overload in mitochondria, translocation of cytochrome c-like protein from mitochondrial to cytosol fraction, and higher activation of caspase-9-like protein after C. coronatus infection. Most importantly, several of the changes observed in insect mitochondria are similar to those accompanying apoptosis in mammalian cells, suggesting that the process is evolutionarily conserved.
Funder
National Science Center
National Centre for Research and Development
Ministry of Science and Higher Education
Subject
Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis
Reference73 articles.
1. Programmed cell death as a defence against infection;Jorgensen;Nat. Rev. Immunol.,2017
2. Williams, T.J., Gonzales-Huerta, L.E., and Armstrong-James, D. (2021). Fungal-induced programmed cell death. J. Fungi, 7.
3. Efferocytosis in health and disease;Doran;Nat. Rev. Immunol.,2020
4. Apoptosis—A brief review;Zhang;Neuroembryol. Aging,2004
5. Mitochondria as multifaceted regulators of cell death;Bock;Nat. Rev. Mol. Cell Biol.,2020
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