INVESTIGADORES
DE ROSSI Maria Cecilia
artículos
Título:
Mitochondrial cellular organization and shape fluctuations are differentially modulated by cytoskeletal networks
Autor/es:
FERNÁNDEZ CASAFUZ, AGUSTINA BELÉN; DE ROSSI, MARÍA CECILIA; BRUNO, LUCIANA
Revista:
Scientific Reports
Editorial:
Nature Research
Referencias:
Año: 2023 vol. 13
Resumen:
The interactions between mitochondria and the cytoskeleton have been found to alter mitochondrial function; however, the mechanisms underlying this phenomenon are largely unknown. Here, we explored how the integrity of the cytoskeleton affects the cellular organization, morphology and mobility of mitochondria in Xenopus laevis melanocytes. Cells were imaged in control condition and after different treatments that selectively affect specific cytoskeletal networks (microtubules, F-actin and vimentin filaments). We observed that mitochondria cellular distribution and local orientation rely mostly on microtubules, positioning these filaments as the main scaffolding of mitochondrial organization. We also found that cytoskeletal networks mold mitochondria shapes in distinct ways: while microtubules favor more elongated organelles, vimentin and actin filaments increase mitochondrial bending, suggesting the presence of mechanical interactions between these filaments and mitochondria. Finally, we identified that microtubule and F-actin networks play opposite roles in mitochondria shape fluctuations and mobility, with microtubules transmitting their jittering to the organelles and F-actin restricting the organelles motion. All our results support that cytoskeleton filaments interact mechanically with mitochondria and transmit forces to these organelles molding their movements and shapes.Correction to: Scientific Reports https:// doi. org/ 10. 1038/ s41598- 023- 31121-w, published online 11 March 2023In the original version of this Article, María Cecilia De Rossi was omitted as a corresponding author.The original Article has been corrected.