Publication: CD9 inhibition reveals a functional connection of extracellular vesicle secretion with mitophagy in melanoma cells.
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WILEY
Abstract
Tetraspanins are often used as Extracellular Vesicle (EV) detection markers because of their abundance on these secreted vesicles. However, data on their function on EV biogenesis are controversial and compensatory mechanisms often occur upon gene deletion. To overcome this handicap, we have compared the effects of tetraspanin CD9 gene deletion with those elicited by cytopermeable peptides with blocking properties against tetraspanin CD9. Both CD9 peptide or gene deletion reduced the number of early endosomes. CD9 peptide induced an increase in lysosome numbers, while CD9 deletion augmented the number of MVB and EV secretion, probably because of compensatory CD63 expression upregulation. , CD9 peptide delayed primary tumour cell growth and reduced metastasis size. These effects on cell proliferation were shown to be concomitant with an impairment in mitochondrial quality control. CD9 KO cells were able to compensate the mitochondrial malfunction by increasing total mitochondrial mass reducing mitophagy. Our data thus provide the first evidence for a functional connection of tetraspanin CD9 with mitophagy in melanoma cells.
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We thank Dr Cabanas for critical reading of the manuscript. We also want to thank Drs Hernansanz-Agustin, Martinez-Ruiz and Formentini for their assistance with Seahorse; Dr Ribas and Neves with X-Cell; and E Veiga, MJ Calzada, JM Falcon-Perez, MJ Vicent, JM Cuezva, I Navarro-Lerida, LC Anton, A Casadome, C Dotti, L Gonzalez-Moreno, A del Arco and MN Navarro for last minute reagents. Thanks both to the CBMSO Electron Microscopy (MT Rejas Marcos, M Guerra Rodriguez and T Matamoros Grande) and Flow cytometry (B Raposo, R Nieto and S Andrade) facilities for the experimental and scientific support. This work has been supported by grants BFU2014-55478-R, BIO2017-86500-R, SAF2015-71231-RED Rediex and RED2018-102411-T TenTaCLES from Ministerio Espanol de Economia y Competitividad (MINECO), grant from the Fundacion Ramon Areces and Leonardo Grant from fBBVA to Maria Yanez-Mo. Henar Suarez and Victor Toribio were supported by FPI-UAM predoctoral fellowships. Zoraida Andreu was supported by a Juan de la Cierva JCI-2012-14695 fellowship. The proteomic analyses were carried out in the 'CBMSO PROTEIN CHEMISTRY FACILITY', that belongs to the network ProteoRed, PRB3-ISCIII, supported by grant PT17/0019, of the PE I+D+i 2013-2016, funded by ISCIII and ERDF.
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J Extracell Vesicles . 2021 May;10(7):e12082





