MICAL2PV suppresses the formation of tunneling nanotubes and modulates mitochondrial trafficking
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ABSTRACT: Tunneling nanotubes (TNTs) are actin-rich structures that connect two or more cells and mediate cargo exchange between spatially separated cells. TNTs transport signaling molecules, vesicles, organelles and even pathogens. However, the molecular mechanisms regulating TNT formation remain unclear ; and little is known about the endogenous mechanisms suppressing TNT formation in lung cancer cells. Here, we report that MICAL2PV, a splicing isoforms of the neuronal guidance gene MICAL2, is a previously unknown novel TNT regulator that suppresses TNT formation and modulates mitochondrial distribution. MICAL2PV interacts with mitochondrial Rho GTPase Miro2 and regulates subcellular mitochondrial trafficking. Moreover, down-regulation of MICAL2PV enhances survival of chemo-drug treated cells trea
SUBMITTER: Fei Wang
PROVIDER: S-SCDT-EMBOR-2020-52006V1 | biostudies-other |
REPOSITORIES: biostudies-other
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