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dc.contributor Emberi Erőforrások Minisztériuma
dc.contributor MTA Bolyai pályázat
dc.contributor.author Mátyási, Barbara
dc.contributor.author Petővári, Gábor
dc.contributor.author Dankó, Titanilla
dc.contributor.author Butz, Henriett
dc.contributor.author Likó, István
dc.contributor.author Lőw, Péter
dc.contributor.author Petit, Isabelle
dc.contributor.author Bittar, Randa
dc.contributor.author Bonnefont-Rousselot, Dominique
dc.contributor.author Farkas, Zsolt
dc.contributor.author Szeniczey, Tamás
dc.contributor.author Molnár, Kinga
dc.contributor.author Palóczi, Krisztina
dc.contributor.author Buzás, Edit I
dc.contributor.author Boissan, Mathieu
dc.contributor.author Sebestyén, Anna
dc.contributor.author Takács-Vellai, Krisztina
dc.date.accessioned 2023-04-06T06:31:53Z
dc.date.available 2023-04-06T06:31:53Z
dc.date.issued 2022
dc.identifier 85137369752
dc.identifier.citation journalVolume=14;journalIssueNumber=16;journalTitle=CANCERS;pagination=3913, pages: 19;journalAbbreviatedTitle=CANCERS;
dc.identifier.uri http://repo.lib.semmelweis.hu//handle/123456789/9381
dc.identifier.uri doi:https://doi.org/10.3390/cancers14163913
dc.description.abstract Nowadays, extracellular vesicles (EVs) raise a great interest as they are implicated in intercellular communication between cancer and stromal cells. Our aim was to understand how vesicular NME1 and NME2 released by breast cancer cells influence the tumour microenvironment. As a model, we used human invasive breast carcinoma cells overexpressing NME1 or NME2, and first analysed in detail the presence of both isoforms in EV subtypes by capillary Western immunoassay (WES) and immunoelectron microscopy. Data obtained by both methods showed that NME1 was present in medium-sized EVs or microvesicles, whereas NME2 was abundant in both microvesicles and small-sized EVs or exosomes. Next, human skin-derived fibroblasts were treated with NME1 or NME2 containing EVs, and subsequently mRNA expression changes in fibroblasts were examined. RNAseq results showed that the expression of fatty acid and cholesterol metabolism-related genes was decreased significantly in response to NME1 or NME2 containing EV treatment. We found that FASN (fatty acid synthase) and ACSS2 (acyl-coenzyme A synthetase short-chain family member 2), related to fatty acid synthesis and oxidation, were underexpressed in NME1/2-EV-treated fibroblasts. Our data show an emerging link between NME-containing EVs and regulation of tumour metabolism.
dc.format.extent 3913
dc.relation.ispartof urn:issn:2072-6694
dc.title Extracellular Vesicle-Mediated Metastasis Suppressors NME1 and NME2 Modify Lipid Metabolism in Fibroblasts.
dc.type Journal Article
dc.date.updated 2023-04-04T12:35:17Z
dc.language.rfc3066 en
dc.rights.holder NULL
dc.identifier.mtmt 33070905
dc.identifier.wos 000846092200001
dc.identifier.pubmed 36010906
dc.contributor.institution Embertani Tanszék
dc.contributor.institution Patológiai és Kísérleti Rákkutató Intézet
dc.contributor.institution ELKH-SE Transzlációs Extracelluláris Vezikula Kutatócsoport
dc.contributor.institution Genetikai Tanszék
dc.contributor.institution MTA-SE Immun-proteogenomikai Extracelluláris Vezikula Kutatócsoport
dc.contributor.institution Semmelweis Egyetem
dc.contributor.institution HCEMM-SE Molecular Oncohematology Research Group
dc.contributor.institution TTK hallgatók
dc.contributor.institution Belgyógyászati és Hematológiai Klinika
dc.contributor.institution MTA-SE Örökletes Daganatok Kutatócsoport
dc.contributor.institution MTA-SE Molekuláris Medicina Kutatócsoport
dc.contributor.institution Országos Onkológiai Intézet
dc.contributor.institution Biológia Doktori Iskola
dc.contributor.institution Laboratóriumi Medicina Intézet
dc.contributor.institution Doktori Iskola
dc.contributor.institution Genetikai, Sejt- és Immunbiológiai Intézet
dc.contributor.institution I. Sz. Patológiai és Kísérleti Rákkutató Intézet
dc.contributor.institution Biológiai Intézet
dc.contributor.institution Anatómiai, Sejt- és Fejlődésbiológiai Tanszék
dc.mtmt.swordnote Department of Biological Anthropology, Eötvös Loránd University, Budapest, 1053, Hungary Department of Pathology and Experimental Cancer Research, Semmelweis University, Budapest, 1085, Hungary Department of Molecular Genetics, National Institute of Oncology, Budapest, 1122, Hungary Hereditary Tumours Research Group, Hungarian Academy of Sciences, Semmelweis University, Budapest, 1085, Hungary Department of Anatomy, Cell and Developmental Biology, ELTE, Eötvös Loránd University, Budapest, 1053, Hungary Centre de Recherche Saint-Antoine, CRSA, Sorbonne Université, INSERM, Paris, 75012, France Service de Biochimie Métabolique, AP-HP, Sorbonne Université, Hôpitaux Universitaires Pitié-Salpêtrière-Charles Foix, Paris, 75013, France ICAN Maladies Cardiovasculaires et Métaboliques, Sorbonne Université, Inserm, UMR_S1166, Paris, 75013, France UFR de Pharmacie, Université Paris Cité, CNRS, Inserm, UTCBS, Paris, 75006, France Department of Genetics, Cell and Immunobiology, Semmelweis University, Budapest, 1085, Hungary HCEMM SU Extracellular Vesicles Research Group, Budapest, 1503, Hungary ELKH Translational Extracellular Vesicle Research Group, Budapest, 1503, Hungary Export Date: 1 November 2022 Correspondence Address: Takács-Vellai, K.; Department of Biological Anthropology, Hungary; email: krisztina.takacs@ttk.elte.hu


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