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Inhibition of cholesterol transport impairs Cav-1 trafficking and small extracellular vesicles secretion,promoting amphisome formation in melanoma cells
Authors:Daniela Peruzzu  Zaira Boussadia  Federica Fratini  Francesca Spadaro  Lucia Bertuccini  Massimo Sanchez  Maria Carollo  Paola Matarrese  Mario Falchi  Francesca Iosi  Carla Raggi  Isabella Parolini  Alessandra Carè  Massimo Sargiacomo  Maria Cristina Gagliardi  Katia Fecchi
Institution:1. Center for Gender-Specific Medicine, Istituto Superiore di Sanità, Rome, Italy;2. National Center for Drug Research and Evaluation, Istituto Superiore di Sanità, Rome, Italy;3. Core Facilities Technical Scientific Service, Istituto Superiore di Sanità, Rome, Italy;4. National Center for HIV/AIDS Research, Istituto Superiore di Sanità, Rome;5. National Center for the control and evaluation of Medicine, Istituto Superiore di Sanità, Rome, Italy;6. Department Oncology and Molecular Medicine, Istituto Superiore di Sanità, Rome, Italy;7. National Center for Global Health, Istituto Superiore di Sanità, Rome, Italy
Abstract:Caveolin-1 (Cav-1) is a fundamental constituent of caveolae, whose functionality and structure are strictly dependent on cholesterol. In this work the U18666A inhibitor was used to study the role of cholesterol transport in the endosomal degradative-secretory system in a metastatic human melanoma cell line (WM266-4). We found that U18666A induces a shift of Cav-1 from the plasma membrane to the endolysosomal compartment, which is involved, through Multi Vesicular Bodies (MVBs), in the formation and release of small extracellular vesicles (sEVs). Moreover, this inhibitor induces an increase in the production of sEVs with chemical–physical characteristics similar to control sEVs but with a different protein composition (lower expression of Cav-1 and increase of LC3II) and reduced transfer capacity on target cells. Furthermore, we determined that U18666A affects mitochondrial function and also cancer cell aggressive features, such as migration and invasion. Taken together, these results indicate that the blockage of cholesterol transport, determining the internalization of Cav-1, may modify sEVs secretory pathways through an increased fusion between autophagosomes and MVBs to form amphisome, which in turn fuses with the plasma membrane releasing a heterogeneous population of sEVs to maintain homeostasis and ensure correct cellular functionality.
Keywords:amphisomes  autophagy  caveolin  cell migration  cholesterol  endosome  extracellular vesicles  melanoma
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