Zur Kurzanzeige

2019-06-20Zeitschriftenartikel
Systems-level Analysis Reveals Multiple Modulators of Epithelial-mesenchymal Transition and Identifies DNAJB4 and CD81 as Novel Metastatis Inducers in Breast Cancer
dc.contributor.authorUretmen Kagiali, Zenyep Cansu
dc.contributor.authorSanal, Erdem
dc.contributor.authorKarayel, Özge
dc.contributor.authorAyşe Nur, Polat
dc.contributor.authorSaatci, Özge
dc.contributor.authorErsan, Pelin Gülizar
dc.contributor.authorTrappe, Kathrin
dc.contributor.authorRenard, Bernhard Y.
dc.contributor.authorÖnder, Tamer T.
dc.contributor.authorTuncbag, Nurcan
dc.contributor.authorŞahin, Özgür
dc.contributor.authorOzlu, Nurhan
dc.date.accessioned2026-08-25T10:17:07Z
dc.date.available2026-08-25T10:17:07Z
dc.date.issued2019-06-20none
dc.identifier.other10.1074/mcp.RA119.001446
dc.identifier.urihttp://edoc.rki.de/176904/13864
dc.description.abstractEpithelial-mesenchymal transition (EMT) is driven by complex signaling events that induce dramatic biochemical and morphological changes whereby epithelial cells are converted into cancer cells. However, the underlying molecular mechanisms remain elusive. Here, we used mass spectrometry based quantitative proteomics approach to systematically analyze the post-translational biochemical changes that drive differentiation of human mammary epithelial (HMLE) cells into mesenchymal. We identified 314 proteins out of more than 6,000 unique proteins and 871 phosphopeptides out of more than 7,000 unique phosphopeptides as differentially regulated. We found that phosphoproteome is more unstable and prone to changes during EMT compared with the proteome and multiple alterations at proteome level are not thoroughly represented by transcriptional data highlighting the necessity of proteome level analysis. We discovered cell state specific signaling pathways, such as Hippo, sphingolipid signaling, and unfolded protein response (UPR) by modeling the networks of regulated proteins and potential kinase-substrate groups. We identified two novel factors for EMT whose expression increased on EMT induction: DnaJ heat shock protein family (Hsp40) member B4 (DNAJB4) and cluster of differentiation 81 (CD81). Suppression of DNAJB4 or CD81 in mesenchymal breast cancer cells resulted in decreased cell migration in vitro and led to reduced primary tumor growth, extravasation, and lung metastasis in vivo. Overall, we performed the global proteomic and phosphoproteomic analyses of EMT, identified and validated new mRNA and/or protein level modulators of EMT. This work also provides a unique platform and resource for future studies focusing on metastasis and drug resistance.eng
dc.language.isoengnone
dc.publisherRobert Koch-Institut
dc.rights(CC BY 3.0 DE) Namensnennung 3.0 Deutschlandger
dc.rights.urihttp://creativecommons.org/licenses/by/3.0/de/
dc.subject.ddc610 Medizin und Gesundheitnone
dc.titleSystems-level Analysis Reveals Multiple Modulators of Epithelial-mesenchymal Transition and Identifies DNAJB4 and CD81 as Novel Metastatis Inducers in Breast Cancernone
dc.typearticle
dc.identifier.urnurn:nbn:de:0257-176904/13864-0
dc.type.versionupdatedVersionnone
local.edoc.container-titleMolecular & Cellular Proteomicsnone
local.edoc.container-issn1535-9484none
local.edoc.pages17none
local.edoc.type-nameZeitschriftenartikel
local.edoc.container-typeperiodical
local.edoc.container-type-nameZeitschrift
local.edoc.container-urlhttps://www.sciencedirect.com/journal/molecular-and-cellular-proteomicsnone
local.edoc.container-publisher-nameElseviernone
local.edoc.container-volume18none
local.edoc.container-issue9none
local.edoc.container-reportyear2019none
local.edoc.container-firstpage1756none
local.edoc.container-lastpage1771none
dc.description.versionPeer Reviewednone

Zur Kurzanzeige