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Caspase Inhibition Affects the Expression of Autophagy-Related Molecules in Chondrocytes
Barbora Vesela1,2, Eva Svandova1,2, Alice Ramesova1
1Department of Physiology, University of Veterinary and Pharmaceutical Sciences, Brno, Czech Republic.
Abstract:
Objective. Caspases, cysteine proteases traditionally associated with apoptosis and inflammation, have recently been identified as important regulators of autophagy and reported within the growth plate, a cartilaginous part of the developing bone. The aim of this research was to identify novel autophagy-related molecules affected by inhibition of pro-apoptotic caspases in chondrocytes. Design. Chondrocyte micromasses derived from mouse limb buds were treated with pharmacological inhibitors of caspases. Autophagy-related gene expression was examined and possible novel molecules were confirmed by real-time polymerase chain reaction and immunocytofluorescence. Individual caspases inhibitors were used to identify the effect of specific caspases. Results. Chondrogenesis accompanied by caspase activation and autophagy progression was confirmed in micromass cultures. Expression of several autophagy-associated genes was significantly altered in the caspases inhibitors treated groups with the most prominent decrease for Pik3cg and increase of Tnfsf10. The results showed the specific pro-apoptotic caspases that play a role in these effects. Importantly, use of caspase inhibitors mimicked changes triggered by an autophagy stimulator, rapamycin, linking loss of caspase activity to an increase in autophagy. Conclusion. Caspase inhibition significantly affects regulation of autophagy-related genes in chondrocytes cultures. Detected markers are of importance in diagnostics and thus the data presented here open new perspectives in the field of cartilage development and degradation.
Insights
Caspase inhibition alters autophagy-related genes in chondrocytes, impacting cartilage development. This study identifies key molecules like Pik3cg and Tnfsf10, offering new diagnostic insights.
Area of Science:
- Cell Biology
- Molecular Biology
- Biochemistry
Background:
- Caspases, traditionally linked to apoptosis and inflammation, are now recognized as regulators of autophagy.
- These proteases have been observed in the growth plate, a crucial area of developing bone.
Purpose of the Study:
- To identify novel autophagy-related molecules influenced by pro-apoptotic caspase inhibition in chondrocytes.
- To investigate the specific role of individual caspases in regulating autophagy in chondrocytes.
Main Methods:
- Chondrocyte micromasses from mouse limb buds were treated with caspase inhibitors.
- Autophagy-related gene expression was analyzed using real-time polymerase chain reaction and immunocytofluorescence.
Main Results:
- Caspase activation and autophagy progression occurred during chondrogenesis in micromass cultures.
- Inhibition of caspases led to significant alterations in autophagy-associated genes, notably decreasing Pik3cg and increasing Tnfsf10 expression.
- Caspase inhibition mimicked the effects of rapamycin, an autophagy stimulator, suggesting a link between reduced caspase activity and enhanced autophagy.
Conclusions:
- Caspase inhibition significantly impacts the regulation of autophagy-related genes within chondrocyte cultures.
- The identified markers hold diagnostic importance for cartilage development and degradation, opening new research avenues.
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