Stefania Vossio
University of Geneva
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Publication
Featured researches published by Stefania Vossio.
Journal of Hepatology | 2012
C. Scisciani; Stefania Vossio; Francesca Guerrieri; V. Schinzari; Rossana De Iaco; Paolo D’Onorio de Meo; Melchiorre Cervello; Giuseppe Montalto; Teresa Pollicino; Giovanni Raimondo; Massimo Levrero; N. Pediconi
BACKGROUND & AIMS miR-224 is up-regulated in human HCCs as compared to both paired peri-tumoral cirrhotic tissues and cirrhotic livers without HCC. Here, we have cloned the miR-224 regulatory region and characterized its transcriptional regulation by the NFκB-dependent inflammatory pathways. METHODS Mature miRNA expression was evaluated by a 2 step stem-loop real-time RT-PCR. The recruitment of polymerase II and transcription factors on the pre-miR-224 promoter has been assessed by ChIPSeq and ChIP. RESULTS We found miR-224 levels strongly up-regulated in both peri-tumoral cirrhotic livers and HCC samples as compared to normal livers. In silico analysis of the putative miR-224 promoter revealed multiple NFκB sites. We showed that LTα and TNFα activate transcription from the miR-224 promoter and of endogenous miR-224 expression in HCC cell lines, whereas the expression of miR-224 target API5 was reduced. Exogenously expressed p65/RelA activates the miR-224 promoter and a dominant negative form of IκBα (IκBSR) represses it. ChIP analysis showed that p65/NFκB is recruited on the miR-224 promoter and that its binding sharply increases after exposure to LPS, TNFα, and LTα. Altogether these findings link the inflammatory signals to NFκB-mediated activation of miR-224 expression. An antago-miR specific for miR-224 blocked LPS and LTα stimulated HCC cells migration and invasion. Conversely, the IKK inhibitor BMS-345541 blocks pre-miR-224-induced cellular migration and invasion. CONCLUSIONS Our results identify p65/NFκB as a direct transcriptional regulator of miR-224 expression and link miR-224 up-regulation with the activation of the LPS, LTα, and TNFα inflammatory pathways and cell migration/invasion in HCC.
EMBO Reports | 2015
Cameron C. Scott; Stefania Vossio; Fabrizio Vacca; Berend Snijder; Jorge Larios; Olivier Schaad; Nicolas Guex; Dmitry Kuznetsov; Olivier Martin; Marc Chambon; Gerardo Turcatti; Lucas Pelkmans; Jean Gruenberg
The Wnt pathway, which controls crucial steps of the development and differentiation programs, has been proposed to influence lipid storage and homeostasis. In this paper, using an unbiased strategy based on high‐content genome‐wide RNAi screens that monitored lipid distribution and amounts, we find that Wnt3a regulates cellular cholesterol. We show that Wnt3a stimulates the production of lipid droplets and that this stimulation strictly depends on endocytosed, LDL‐derived cholesterol and on functional early and late endosomes. We also show that Wnt signaling itself controls cholesterol endocytosis and flux along the endosomal pathway, which in turn modulates cellular lipid homeostasis. These results underscore the importance of endosome functions for LD formation and reveal a previously unknown regulatory mechanism of the cellular programs controlling lipid storage and endosome transport under the control of Wnt signaling.
eLife | 2018
Cameron C. Scott; Stefania Vossio; Jacques Rougemont; Jean Gruenberg
How trafficking pathways and organelle abundance adapt in response to metabolic and physiological changes is still mysterious, although a few transcriptional regulators of organellar biogenesis have been identified in recent years. We previously found that the Wnt signaling directly controls lipid droplet formation, linking the cell storage capacity to the established functions of Wnt in development and differentiation. In the present paper, we report that Wnt-induced lipid droplet biogenesis does not depend on the canonical TCF/LEF transcription factors. Instead, we find that TFAP2 family members mediate the pro-lipid droplet signal induced by Wnt3a, leading to the notion that the TFAP2 transcription factor may function as a ‘master’ regulator of lipid droplet biogenesis.
bioRxiv | 2018
Dimitri Moreau; Fabrizio Vacca; Stefania Vossio; Cameron C. Scott; Alexandria Colaco; Jonathan Paz Montoya; Charles Ferguson; Marc Moniatte; Robert G. Parton; Frances M. Platt; Jean Gruenberg
Most cells acquire cholesterol by endocytosis of circulating LDLs. After cholesteryl ester de-esterification in endosomes, free cholesterol is redistributed to intracellular membranes via unclear mechanisms. Our previous work suggested that the unconventional phospholipid lysobisphosphatidic acid (LBPA) may play a role in modulating the cholesterol flux through endosomes. In this study, we used the Prestwick library of FDA-approved compounds in a high content, image-based screen of the endosomal lipids, lysobisphosphatidic acid and LDL-derived cholesterol. We report that thioperamide maleate, an inverse agonist of the histamine H3 receptor HRH3, increases highly selectively the levels of lysobisphosphatidic acid, without affecting any endosomal protein or function that we tested. Our data also show that thioperamide significantly reduces the endosome cholesterol overload in fibroblasts from patients with the cholesterol storage disorder Niemann-Pick type C (NPC), as well as in liver of Npc1−/−mice. We conclude that LBPA controls endosomal cholesterol mobilization and export to cellular destinations, perhaps by fluidifying or buffering cholesterol in endosomal membranes, and that thioperamide has repurposing potential for the treatment of NPC.
bioRxiv | 2018
Fabrizio Vacca; Stefania Vossio; Vincent Mercier; Dimitri Moreau; Shem Johnson; Jonathan Paz Montoya; Marc Moniatte; Jean Gruenberg
In specialized cell types, lysosome-related organelles support regulated secretory pathways, while in non-specialized cells, lysosomes can undergo fusion with the plasma membrane in response to a transient rise in cytosolic calcium. Recent evidence also indicates that lysosome secretion can be controlled transcriptionally and promote clearance in lysosome storage diseases. In addition, evidence is also accumulating that low concentrations of cyclodextrins reduce the cholesterol storage phenotype in cells and animals with the cholesterol storage disease Niemann-Pick type C, via an unknown mechanism. Here, we report that cyclodextrin triggers the secretion of the endo/lysosomal content in non-specialized cells, and that this mechanism is responsible for the decreased cholesterol overload in Niemann-Pick type C cells. We also find that that the secretion of the endo/lysosome content occurs via a mechanism dependent on the endosomal calcium channel MCOLN1, as well as FYCO1, the AP1 adaptor and its partner Gadkin. We conclude that endolysosomes in non-specialized cells can acquire secretory functions elicited by cyclodextrin, and that this pathway is responsible for the decrease in cholesterol storage in Niemann-Pick C cells.
Journal of Hepatology | 2008
N. Pediconi; Stefania Vossio; Teresa Pollicino; Giuseppe Montalto; Melchiorre Cervello; Giovanni Raimondo; Massimo Levrero
Journal of Hepatology | 2009
N. Pediconi; Stefania Vossio; V. Schinzari; C. Scisciani; R. De Iaco; Massimo Levrero
Archive | 2008
Giuseppe Montalto; Giovanni Raimondo; N. Pediconi; Stefania Vossio; Teresa Pollicino; Melchiorre Cervello; Massimo Levrero
Journal of Hepatology | 2008
V. Schinzari; E. Palescandolo; Stefania Vossio; B. Testoni; R. De Iaco; Massimo Levrero
Journal of Hepatology | 2007
N. Pediconi; F. Guerrieri; Stefania Vossio; L. Belloni; T. Bruno; Maurizio Fanciulli; M. Levrero