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UDP‐glucose dehydrogenase expression is upregulated following EMT and differentially affects intracellular glycerophosphocholine and acetylaspartate levels in breast mesenchymal cell lines

Metabolic rewiring is one of the indispensable drivers of epithelial–mesenchymal transition (EMT) involved in breast cancer metastasis. In this study, we explored the metabolic changes during spontaneous EMT in three separately established breast EMT cell models using a proteomic approach supported...

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Autores principales: Wang, Qiong, Karvelsson, Sigurdur Trausti, Johannsson, Freyr, Vilhjalmsson, Arnar Ingi, Hagen, Lars, de Miranda Fonseca, Davi, Sharma, Animesh, Slupphaug, Geir, Rolfsson, Ottar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9067156/
https://www.ncbi.nlm.nih.gov/pubmed/34942055
http://dx.doi.org/10.1002/1878-0261.13172
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author Wang, Qiong
Karvelsson, Sigurdur Trausti
Johannsson, Freyr
Vilhjalmsson, Arnar Ingi
Hagen, Lars
de Miranda Fonseca, Davi
Sharma, Animesh
Slupphaug, Geir
Rolfsson, Ottar
author_facet Wang, Qiong
Karvelsson, Sigurdur Trausti
Johannsson, Freyr
Vilhjalmsson, Arnar Ingi
Hagen, Lars
de Miranda Fonseca, Davi
Sharma, Animesh
Slupphaug, Geir
Rolfsson, Ottar
author_sort Wang, Qiong
collection PubMed
description Metabolic rewiring is one of the indispensable drivers of epithelial–mesenchymal transition (EMT) involved in breast cancer metastasis. In this study, we explored the metabolic changes during spontaneous EMT in three separately established breast EMT cell models using a proteomic approach supported by metabolomic analysis. We identified common proteomic changes, including the expression of CDH1, CDH2, VIM, LGALS1, SERPINE1, PKP3, ATP2A2, JUP, MTCH2, RPL26L1 and PLOD2. Consistently altered metabolic enzymes included the following: FDFT1, SORD, TSTA3 and UDP‐glucose dehydrogenase (UGDH). Of these, UGDH was most prominently altered and has previously been associated with breast cancer patient survival. siRNA‐mediated knock‐down of UGDH resulted in delayed cell proliferation and dampened invasive potential of mesenchymal cells and downregulated expression of the EMT transcription factor SNAI1. Metabolomic analysis revealed that siRNA‐mediated knock‐down of UGDH decreased intracellular glycerophosphocholine (GPC), whereas levels of acetylaspartate (NAA) increased. Finally, our data suggested that platelet‐derived growth factor receptor beta (PDGFRB) signalling was activated in mesenchymal cells. siRNA‐mediated knock‐down of PDGFRB downregulated UGDH expression, potentially via NFkB‐p65. Our results support an unexplored relationship between UGDH and GPC, both of which have previously been independently associated with breast cancer progression.
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spelling pubmed-90671562022-05-09 UDP‐glucose dehydrogenase expression is upregulated following EMT and differentially affects intracellular glycerophosphocholine and acetylaspartate levels in breast mesenchymal cell lines Wang, Qiong Karvelsson, Sigurdur Trausti Johannsson, Freyr Vilhjalmsson, Arnar Ingi Hagen, Lars de Miranda Fonseca, Davi Sharma, Animesh Slupphaug, Geir Rolfsson, Ottar Mol Oncol Research Articles Metabolic rewiring is one of the indispensable drivers of epithelial–mesenchymal transition (EMT) involved in breast cancer metastasis. In this study, we explored the metabolic changes during spontaneous EMT in three separately established breast EMT cell models using a proteomic approach supported by metabolomic analysis. We identified common proteomic changes, including the expression of CDH1, CDH2, VIM, LGALS1, SERPINE1, PKP3, ATP2A2, JUP, MTCH2, RPL26L1 and PLOD2. Consistently altered metabolic enzymes included the following: FDFT1, SORD, TSTA3 and UDP‐glucose dehydrogenase (UGDH). Of these, UGDH was most prominently altered and has previously been associated with breast cancer patient survival. siRNA‐mediated knock‐down of UGDH resulted in delayed cell proliferation and dampened invasive potential of mesenchymal cells and downregulated expression of the EMT transcription factor SNAI1. Metabolomic analysis revealed that siRNA‐mediated knock‐down of UGDH decreased intracellular glycerophosphocholine (GPC), whereas levels of acetylaspartate (NAA) increased. Finally, our data suggested that platelet‐derived growth factor receptor beta (PDGFRB) signalling was activated in mesenchymal cells. siRNA‐mediated knock‐down of PDGFRB downregulated UGDH expression, potentially via NFkB‐p65. Our results support an unexplored relationship between UGDH and GPC, both of which have previously been independently associated with breast cancer progression. John Wiley and Sons Inc. 2022-02-03 2022-05 /pmc/articles/PMC9067156/ /pubmed/34942055 http://dx.doi.org/10.1002/1878-0261.13172 Text en © 2021 The Authors. Molecular Oncology published by John Wiley & Sons Ltd on behalf of Federation of European Biochemical Societies. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Wang, Qiong
Karvelsson, Sigurdur Trausti
Johannsson, Freyr
Vilhjalmsson, Arnar Ingi
Hagen, Lars
de Miranda Fonseca, Davi
Sharma, Animesh
Slupphaug, Geir
Rolfsson, Ottar
UDP‐glucose dehydrogenase expression is upregulated following EMT and differentially affects intracellular glycerophosphocholine and acetylaspartate levels in breast mesenchymal cell lines
title UDP‐glucose dehydrogenase expression is upregulated following EMT and differentially affects intracellular glycerophosphocholine and acetylaspartate levels in breast mesenchymal cell lines
title_full UDP‐glucose dehydrogenase expression is upregulated following EMT and differentially affects intracellular glycerophosphocholine and acetylaspartate levels in breast mesenchymal cell lines
title_fullStr UDP‐glucose dehydrogenase expression is upregulated following EMT and differentially affects intracellular glycerophosphocholine and acetylaspartate levels in breast mesenchymal cell lines
title_full_unstemmed UDP‐glucose dehydrogenase expression is upregulated following EMT and differentially affects intracellular glycerophosphocholine and acetylaspartate levels in breast mesenchymal cell lines
title_short UDP‐glucose dehydrogenase expression is upregulated following EMT and differentially affects intracellular glycerophosphocholine and acetylaspartate levels in breast mesenchymal cell lines
title_sort udp‐glucose dehydrogenase expression is upregulated following emt and differentially affects intracellular glycerophosphocholine and acetylaspartate levels in breast mesenchymal cell lines
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9067156/
https://www.ncbi.nlm.nih.gov/pubmed/34942055
http://dx.doi.org/10.1002/1878-0261.13172
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