Itraconazole inhibits nuclear delivery of extracellular vesicle cargo by disrupting the entry of late endosomes into the nucleoplasmic reticulum

  • Mark F. Santos
    College of Medicine Touro University Nevada Henderson Nevada USA
  • Germana Rappa
    College of Medicine Touro University Nevada Henderson Nevada USA
  • Jana Karbanová
    Biotechnology Centre and Centre for Molecular and Cellular Bioengineering Technische Universität Dresden Dresden Germany
  • Simona Fontana
    Department of Biomedicine, Neurosciences and Advanced Diagnostics University of Palermo Palermo Italy
  • Maria Antonietta Di Bella
    Department of Biomedicine, Neurosciences and Advanced Diagnostics University of Palermo Palermo Italy
  • Marshall R. Pope
    Proteomics Facility University of Iowa Iowa City Iowa USA
  • Barbara Parrino
    Dipartimento di Scienze e Tecnologie Biologiche Chimiche e Farmaceutiche Università degli Studi di Palermo Palermo Italy
  • Stella Maria Cascioferro
    Dipartimento di Scienze e Tecnologie Biologiche Chimiche e Farmaceutiche Università degli Studi di Palermo Palermo Italy
  • Giulio Vistoli
    Dipartimento di Scienze Farmaceutiche Università degli Studi di Milano Milan Italy
  • Patrizia Diana
    Dipartimento di Scienze e Tecnologie Biologiche Chimiche e Farmaceutiche Università degli Studi di Palermo Palermo Italy
  • Girolamo Cirrincione
    Dipartimento di Scienze e Tecnologie Biologiche Chimiche e Farmaceutiche Università degli Studi di Palermo Palermo Italy
  • Goffredo O. Arena
    Department of Surgery McGill University Montréal Québec Canada
  • Gyunghwi Woo
    College of Medicine Touro University Nevada Henderson Nevada USA
  • Kevin Huang
    College of Medicine Touro University Nevada Henderson Nevada USA
  • Tony Huynh
    College of Medicine Touro University Nevada Henderson Nevada USA
  • Marta Moschetti
    Department of Biomedicine, Neurosciences and Advanced Diagnostics University of Palermo Palermo Italy
  • Riccardo Alessandro
    Department of Biomedicine, Neurosciences and Advanced Diagnostics University of Palermo Palermo Italy
  • Denis Corbeil
    Biotechnology Centre and Centre for Molecular and Cellular Bioengineering Technische Universität Dresden Dresden Germany
  • Aurelio Lorico
    College of Medicine Touro University Nevada Henderson Nevada USA

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<jats:title>ABSTRACT</jats:title><jats:p>Extracellular vesicles (EVs) are mediators of intercellular communication under both healthy and pathological conditions, including the induction of pro‐metastatic traits, but it is not yet known how and where functional cargoes of EVs are delivered to their targets in host cell compartments. We have described that after endocytosis, EVs reach Rab7<jats:sup>+</jats:sup> late endosomes and a fraction of these enter the nucleoplasmic reticulum and transport EV biomaterials to the host cell nucleoplasm. Their entry therein and docking to outer nuclear membrane occur through a tripartite complex formed by the proteins VAP‐A, ORP3 and Rab7 (VOR complex). Here, we report that the antifungal compound itraconazole (ICZ), but not its main metabolite hydroxy‐ICZ or ketoconazole, disrupts the binding of Rab7 to ORP3–VAP‐A complexes, leading to inhibition of EV‐mediated pro‐metastatic morphological changes including cell migration behaviour of colon cancer cells. With novel, smaller chemical drugs, inhibition of the VOR complex was maintained, although the ICZ moieties responsible for antifungal activity and interference with intracellular cholesterol distribution were removed. Knowing that cancer cells hijack their microenvironment and that EVs derived from them determine the pre‐metastatic niche, small‐sized inhibitors of nuclear transfer of EV cargo into host cells could find cancer therapeutic applications, particularly in combination with direct targeting of cancer cells.</jats:p>

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