Cargando…

Vimentin prevents a miR-dependent negative regulation of tissue factor mRNA during epithelial–mesenchymal transitions and facilitates early metastasis

Epithelial–mesenchymal transitions (EMTs) are high-profile in the field of circulating tumor cells (CTCs). EMT-shifted CTCs are considered to encompass pre-metastatic subpopulations though underlying molecular mechanisms remain elusive. Our previous work identified tissue factor (TF) as an EMT-induc...

Descripción completa

Detalles Bibliográficos
Autores principales: Francart, Marie-Emilie, Vanwynsberghe, Aline M., Lambert, Justine, Bourcy, Morgane, Genna, Anthony, Ancel, Julien, Perez-Boza, Jennifer, Noël, Agnès, Birembaut, Philippe, Struman, Ingrid, Polette, Myriam, Gilles, Christine
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7190572/
https://www.ncbi.nlm.nih.gov/pubmed/32152404
http://dx.doi.org/10.1038/s41388-020-1244-1
_version_ 1783527708953673728
author Francart, Marie-Emilie
Vanwynsberghe, Aline M.
Lambert, Justine
Bourcy, Morgane
Genna, Anthony
Ancel, Julien
Perez-Boza, Jennifer
Noël, Agnès
Birembaut, Philippe
Struman, Ingrid
Polette, Myriam
Gilles, Christine
author_facet Francart, Marie-Emilie
Vanwynsberghe, Aline M.
Lambert, Justine
Bourcy, Morgane
Genna, Anthony
Ancel, Julien
Perez-Boza, Jennifer
Noël, Agnès
Birembaut, Philippe
Struman, Ingrid
Polette, Myriam
Gilles, Christine
author_sort Francart, Marie-Emilie
collection PubMed
description Epithelial–mesenchymal transitions (EMTs) are high-profile in the field of circulating tumor cells (CTCs). EMT-shifted CTCs are considered to encompass pre-metastatic subpopulations though underlying molecular mechanisms remain elusive. Our previous work identified tissue factor (TF) as an EMT-induced gene providing tumor cells with coagulant properties and supporting metastatic colonization by CTCs. We here report that vimentin, the type III intermediate filament considered a canonical EMT marker, contributes to TF regulation and positively supports coagulant properties and early metastasis. Different evidence further pointed to a new post-transcriptional regulatory mechanism of TF mRNA by vimentin: (1) vimentin silencing accelerated TF mRNA decay after actinomycin D treatment, reflecting TF mRNA stabilization, (2) RNA immunoprecipitation revealed enriched levels of TF mRNA in vimentin immunoprecipitate, (3) TF 3′-UTR-luciferase reporter vector assays implicated the 3′-UTR of TF mRNA in vimentin-dependent TF regulation, and (4) using different TF 3′UTR-luciferase reporter vectors mutated for potential miR binding sites and specific Target Site Blockers identified a key miR binding site in vimentin-dependent TF mRNA regulation. All together, these data support a novel mechanism by which vimentin interferes with a miR-dependent negative regulation of TF mRNA, thereby promoting coagulant activity and early metastasis of vimentin-expressing CTCs.
format Online
Article
Text
id pubmed-7190572
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Nature Publishing Group UK
record_format MEDLINE/PubMed
spelling pubmed-71905722020-05-04 Vimentin prevents a miR-dependent negative regulation of tissue factor mRNA during epithelial–mesenchymal transitions and facilitates early metastasis Francart, Marie-Emilie Vanwynsberghe, Aline M. Lambert, Justine Bourcy, Morgane Genna, Anthony Ancel, Julien Perez-Boza, Jennifer Noël, Agnès Birembaut, Philippe Struman, Ingrid Polette, Myriam Gilles, Christine Oncogene Article Epithelial–mesenchymal transitions (EMTs) are high-profile in the field of circulating tumor cells (CTCs). EMT-shifted CTCs are considered to encompass pre-metastatic subpopulations though underlying molecular mechanisms remain elusive. Our previous work identified tissue factor (TF) as an EMT-induced gene providing tumor cells with coagulant properties and supporting metastatic colonization by CTCs. We here report that vimentin, the type III intermediate filament considered a canonical EMT marker, contributes to TF regulation and positively supports coagulant properties and early metastasis. Different evidence further pointed to a new post-transcriptional regulatory mechanism of TF mRNA by vimentin: (1) vimentin silencing accelerated TF mRNA decay after actinomycin D treatment, reflecting TF mRNA stabilization, (2) RNA immunoprecipitation revealed enriched levels of TF mRNA in vimentin immunoprecipitate, (3) TF 3′-UTR-luciferase reporter vector assays implicated the 3′-UTR of TF mRNA in vimentin-dependent TF regulation, and (4) using different TF 3′UTR-luciferase reporter vectors mutated for potential miR binding sites and specific Target Site Blockers identified a key miR binding site in vimentin-dependent TF mRNA regulation. All together, these data support a novel mechanism by which vimentin interferes with a miR-dependent negative regulation of TF mRNA, thereby promoting coagulant activity and early metastasis of vimentin-expressing CTCs. Nature Publishing Group UK 2020-03-10 2020 /pmc/articles/PMC7190572/ /pubmed/32152404 http://dx.doi.org/10.1038/s41388-020-1244-1 Text en © The Author(s) 2020 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Francart, Marie-Emilie
Vanwynsberghe, Aline M.
Lambert, Justine
Bourcy, Morgane
Genna, Anthony
Ancel, Julien
Perez-Boza, Jennifer
Noël, Agnès
Birembaut, Philippe
Struman, Ingrid
Polette, Myriam
Gilles, Christine
Vimentin prevents a miR-dependent negative regulation of tissue factor mRNA during epithelial–mesenchymal transitions and facilitates early metastasis
title Vimentin prevents a miR-dependent negative regulation of tissue factor mRNA during epithelial–mesenchymal transitions and facilitates early metastasis
title_full Vimentin prevents a miR-dependent negative regulation of tissue factor mRNA during epithelial–mesenchymal transitions and facilitates early metastasis
title_fullStr Vimentin prevents a miR-dependent negative regulation of tissue factor mRNA during epithelial–mesenchymal transitions and facilitates early metastasis
title_full_unstemmed Vimentin prevents a miR-dependent negative regulation of tissue factor mRNA during epithelial–mesenchymal transitions and facilitates early metastasis
title_short Vimentin prevents a miR-dependent negative regulation of tissue factor mRNA during epithelial–mesenchymal transitions and facilitates early metastasis
title_sort vimentin prevents a mir-dependent negative regulation of tissue factor mrna during epithelial–mesenchymal transitions and facilitates early metastasis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7190572/
https://www.ncbi.nlm.nih.gov/pubmed/32152404
http://dx.doi.org/10.1038/s41388-020-1244-1
work_keys_str_mv AT francartmarieemilie vimentinpreventsamirdependentnegativeregulationoftissuefactormrnaduringepithelialmesenchymaltransitionsandfacilitatesearlymetastasis
AT vanwynsberghealinem vimentinpreventsamirdependentnegativeregulationoftissuefactormrnaduringepithelialmesenchymaltransitionsandfacilitatesearlymetastasis
AT lambertjustine vimentinpreventsamirdependentnegativeregulationoftissuefactormrnaduringepithelialmesenchymaltransitionsandfacilitatesearlymetastasis
AT bourcymorgane vimentinpreventsamirdependentnegativeregulationoftissuefactormrnaduringepithelialmesenchymaltransitionsandfacilitatesearlymetastasis
AT gennaanthony vimentinpreventsamirdependentnegativeregulationoftissuefactormrnaduringepithelialmesenchymaltransitionsandfacilitatesearlymetastasis
AT anceljulien vimentinpreventsamirdependentnegativeregulationoftissuefactormrnaduringepithelialmesenchymaltransitionsandfacilitatesearlymetastasis
AT perezbozajennifer vimentinpreventsamirdependentnegativeregulationoftissuefactormrnaduringepithelialmesenchymaltransitionsandfacilitatesearlymetastasis
AT noelagnes vimentinpreventsamirdependentnegativeregulationoftissuefactormrnaduringepithelialmesenchymaltransitionsandfacilitatesearlymetastasis
AT birembautphilippe vimentinpreventsamirdependentnegativeregulationoftissuefactormrnaduringepithelialmesenchymaltransitionsandfacilitatesearlymetastasis
AT strumaningrid vimentinpreventsamirdependentnegativeregulationoftissuefactormrnaduringepithelialmesenchymaltransitionsandfacilitatesearlymetastasis
AT polettemyriam vimentinpreventsamirdependentnegativeregulationoftissuefactormrnaduringepithelialmesenchymaltransitionsandfacilitatesearlymetastasis
AT gilleschristine vimentinpreventsamirdependentnegativeregulationoftissuefactormrnaduringepithelialmesenchymaltransitionsandfacilitatesearlymetastasis