MIRO1, A KEY ACTOR IN THE REGULATION OF MITOCHONDRIAL TRANSFER TO GLIOBLASTOMA CELLS
Cajal Neuroscience Center
Presentation
Date TBA
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Poster Board
PS05-09AM-496
Poster
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Here, we evaluate mitochondrial transfer from donor neural cells to GBM cells, both in vitro and in vivo. Our results indicate that Miro1 is critical in this process, as it is required for mitochondrial transfer through TNTs. Capitalizing on genetic and pharmacological approaches, we show that Miro1 downregulation significantly impaired mitochondrial transfer from donor cells to GBM cells via TNTs, at the expense of changes in the acquisition of free mitochondria. Upstream of Miro1, interfering with actin and tubulin polymerization and thus mitochondrial interactions with the cytoskeleton extensively disrupts mitochondrial transfer to GBM cells, as confirmed by microscopy and flow cytometry.
Together, these findings highlight the importance of Miro1–cytoskeleton interactions in regulating mitochondrial transfer, supporting the impact of transfer as primers of GBM tumor progression and placing it as a key therapeutic target to limit GBM development.
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