Cargando…

TGFβ promotes breast cancer stem cell self-renewal through an ILEI/LIFR signaling axis

FAM3C/Interleukin-like EMT Inducer (ILEI) is an oncogenic member of the FAM3 cytokine family and serves essential roles in both epithelial-mesenchymal transition (EMT) and breast cancer metastasis. ILEI expression levels are regulated through a non-canonical TGFβ signaling pathway by 3’-UTR-mediated...

Descripción completa

Detalles Bibliográficos
Autores principales: Woosley, Alec N., Dalton, Annamarie C., Hussey, George S., Howley, Breege V., Mohanty, Bidyut K., Grelet, Simon, Dincman, Toros, Bloos, Sean, Olsen, Shaun K., Howe, Philip H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6525020/
https://www.ncbi.nlm.nih.gov/pubmed/30692635
http://dx.doi.org/10.1038/s41388-019-0703-z
_version_ 1783419653124521984
author Woosley, Alec N.
Dalton, Annamarie C.
Hussey, George S.
Howley, Breege V.
Mohanty, Bidyut K.
Grelet, Simon
Dincman, Toros
Bloos, Sean
Olsen, Shaun K.
Howe, Philip H.
author_facet Woosley, Alec N.
Dalton, Annamarie C.
Hussey, George S.
Howley, Breege V.
Mohanty, Bidyut K.
Grelet, Simon
Dincman, Toros
Bloos, Sean
Olsen, Shaun K.
Howe, Philip H.
author_sort Woosley, Alec N.
collection PubMed
description FAM3C/Interleukin-like EMT Inducer (ILEI) is an oncogenic member of the FAM3 cytokine family and serves essential roles in both epithelial-mesenchymal transition (EMT) and breast cancer metastasis. ILEI expression levels are regulated through a non-canonical TGFβ signaling pathway by 3’-UTR-mediated translational silencing at the mRNA level by hnRNP E1. TGFβ stimulation or silencing of hnRNP E1 increases ILEI translation and induces an EMT program that correlates to enhanced invasion and migration. Recently, EMT has been linked to the formation of breast cancer stem cells (BCSCs) that confer both tumor cell heterogeneity as well as chemoresistant properties. Herein, we demonstrate that hnRNP E1 knockdown significantly shifts normal mammary epithelial cells to mesenchymal BCSCs in vitro and in vivo. We further validate that modulating ILEI protein levels results in the abrogation of these phenotypes, promoting further investigation into the unknown mechanism of ILEI signaling that drives tumor progression. We identify LIFR as the receptor for ILEI, which mediates signaling through STAT3 to drive both EMT and BCSC formation. Reduction of either ILEI or LIFR protein levels results in reduced tumor growth, fewer tumor initiating cells and reduced metastasis within the hnRNP E1 knock-down cell populations in vivo. These results reveal a novel ligand-receptor complex that drives the formation of BCSCs and represents a unique target for the development of metastatic breast cancer therapies.
format Online
Article
Text
id pubmed-6525020
institution National Center for Biotechnology Information
language English
publishDate 2019
record_format MEDLINE/PubMed
spelling pubmed-65250202019-07-28 TGFβ promotes breast cancer stem cell self-renewal through an ILEI/LIFR signaling axis Woosley, Alec N. Dalton, Annamarie C. Hussey, George S. Howley, Breege V. Mohanty, Bidyut K. Grelet, Simon Dincman, Toros Bloos, Sean Olsen, Shaun K. Howe, Philip H. Oncogene Article FAM3C/Interleukin-like EMT Inducer (ILEI) is an oncogenic member of the FAM3 cytokine family and serves essential roles in both epithelial-mesenchymal transition (EMT) and breast cancer metastasis. ILEI expression levels are regulated through a non-canonical TGFβ signaling pathway by 3’-UTR-mediated translational silencing at the mRNA level by hnRNP E1. TGFβ stimulation or silencing of hnRNP E1 increases ILEI translation and induces an EMT program that correlates to enhanced invasion and migration. Recently, EMT has been linked to the formation of breast cancer stem cells (BCSCs) that confer both tumor cell heterogeneity as well as chemoresistant properties. Herein, we demonstrate that hnRNP E1 knockdown significantly shifts normal mammary epithelial cells to mesenchymal BCSCs in vitro and in vivo. We further validate that modulating ILEI protein levels results in the abrogation of these phenotypes, promoting further investigation into the unknown mechanism of ILEI signaling that drives tumor progression. We identify LIFR as the receptor for ILEI, which mediates signaling through STAT3 to drive both EMT and BCSC formation. Reduction of either ILEI or LIFR protein levels results in reduced tumor growth, fewer tumor initiating cells and reduced metastasis within the hnRNP E1 knock-down cell populations in vivo. These results reveal a novel ligand-receptor complex that drives the formation of BCSCs and represents a unique target for the development of metastatic breast cancer therapies. 2019-01-28 2019-05 /pmc/articles/PMC6525020/ /pubmed/30692635 http://dx.doi.org/10.1038/s41388-019-0703-z Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Woosley, Alec N.
Dalton, Annamarie C.
Hussey, George S.
Howley, Breege V.
Mohanty, Bidyut K.
Grelet, Simon
Dincman, Toros
Bloos, Sean
Olsen, Shaun K.
Howe, Philip H.
TGFβ promotes breast cancer stem cell self-renewal through an ILEI/LIFR signaling axis
title TGFβ promotes breast cancer stem cell self-renewal through an ILEI/LIFR signaling axis
title_full TGFβ promotes breast cancer stem cell self-renewal through an ILEI/LIFR signaling axis
title_fullStr TGFβ promotes breast cancer stem cell self-renewal through an ILEI/LIFR signaling axis
title_full_unstemmed TGFβ promotes breast cancer stem cell self-renewal through an ILEI/LIFR signaling axis
title_short TGFβ promotes breast cancer stem cell self-renewal through an ILEI/LIFR signaling axis
title_sort tgfβ promotes breast cancer stem cell self-renewal through an ilei/lifr signaling axis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6525020/
https://www.ncbi.nlm.nih.gov/pubmed/30692635
http://dx.doi.org/10.1038/s41388-019-0703-z
work_keys_str_mv AT woosleyalecn tgfbpromotesbreastcancerstemcellselfrenewalthroughanileilifrsignalingaxis
AT daltonannamariec tgfbpromotesbreastcancerstemcellselfrenewalthroughanileilifrsignalingaxis
AT husseygeorges tgfbpromotesbreastcancerstemcellselfrenewalthroughanileilifrsignalingaxis
AT howleybreegev tgfbpromotesbreastcancerstemcellselfrenewalthroughanileilifrsignalingaxis
AT mohantybidyutk tgfbpromotesbreastcancerstemcellselfrenewalthroughanileilifrsignalingaxis
AT greletsimon tgfbpromotesbreastcancerstemcellselfrenewalthroughanileilifrsignalingaxis
AT dincmantoros tgfbpromotesbreastcancerstemcellselfrenewalthroughanileilifrsignalingaxis
AT bloossean tgfbpromotesbreastcancerstemcellselfrenewalthroughanileilifrsignalingaxis
AT olsenshaunk tgfbpromotesbreastcancerstemcellselfrenewalthroughanileilifrsignalingaxis
AT howephiliph tgfbpromotesbreastcancerstemcellselfrenewalthroughanileilifrsignalingaxis