Cx26 drives self-renewal in triple-negative breast cancer via interaction with NANOG and focal adhesion kinase

Connexin proteins are usually considered as tumor suppressors. Here, the authors show that connexin 26 (Cx26) regulates the self-renewal of breast cancer stem cells via a ternary complex with FAK and NANOG.

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Autores principales: Praveena S. Thiagarajan, Maksim Sinyuk, Soumya M. Turaga, Erin E. Mulkearns-Hubert, James S. Hale, Vinay Rao, Abeba Demelash, Caner Saygin, Arnab China, Tyler J. Alban, Masahiro Hitomi, Luke A. Torre-Healy, Alvaro G. Alvarado, Awad Jarrar, Andrew Wiechert, Valery Adorno-Cruz, Paul L. Fox, Benjamin C. Calhoun, Jun-Lin Guan, Huiping Liu, Ofer Reizes, Justin D. Lathia
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Lenguaje:EN
Publicado: Nature Portfolio 2018
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Acceso en línea:https://doaj.org/article/8069efa147334bedbe33b1e19b4d7241
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spelling oai:doaj.org-article:8069efa147334bedbe33b1e19b4d72412021-12-02T16:56:41ZCx26 drives self-renewal in triple-negative breast cancer via interaction with NANOG and focal adhesion kinase10.1038/s41467-018-02938-12041-1723https://doaj.org/article/8069efa147334bedbe33b1e19b4d72412018-02-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-02938-1https://doaj.org/toc/2041-1723Connexin proteins are usually considered as tumor suppressors. Here, the authors show that connexin 26 (Cx26) regulates the self-renewal of breast cancer stem cells via a ternary complex with FAK and NANOG.Praveena S. ThiagarajanMaksim SinyukSoumya M. TuragaErin E. Mulkearns-HubertJames S. HaleVinay RaoAbeba DemelashCaner SayginArnab ChinaTyler J. AlbanMasahiro HitomiLuke A. Torre-HealyAlvaro G. AlvaradoAwad JarrarAndrew WiechertValery Adorno-CruzPaul L. FoxBenjamin C. CalhounJun-Lin GuanHuiping LiuOfer ReizesJustin D. LathiaNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-14 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Praveena S. Thiagarajan
Maksim Sinyuk
Soumya M. Turaga
Erin E. Mulkearns-Hubert
James S. Hale
Vinay Rao
Abeba Demelash
Caner Saygin
Arnab China
Tyler J. Alban
Masahiro Hitomi
Luke A. Torre-Healy
Alvaro G. Alvarado
Awad Jarrar
Andrew Wiechert
Valery Adorno-Cruz
Paul L. Fox
Benjamin C. Calhoun
Jun-Lin Guan
Huiping Liu
Ofer Reizes
Justin D. Lathia
Cx26 drives self-renewal in triple-negative breast cancer via interaction with NANOG and focal adhesion kinase
description Connexin proteins are usually considered as tumor suppressors. Here, the authors show that connexin 26 (Cx26) regulates the self-renewal of breast cancer stem cells via a ternary complex with FAK and NANOG.
format article
author Praveena S. Thiagarajan
Maksim Sinyuk
Soumya M. Turaga
Erin E. Mulkearns-Hubert
James S. Hale
Vinay Rao
Abeba Demelash
Caner Saygin
Arnab China
Tyler J. Alban
Masahiro Hitomi
Luke A. Torre-Healy
Alvaro G. Alvarado
Awad Jarrar
Andrew Wiechert
Valery Adorno-Cruz
Paul L. Fox
Benjamin C. Calhoun
Jun-Lin Guan
Huiping Liu
Ofer Reizes
Justin D. Lathia
author_facet Praveena S. Thiagarajan
Maksim Sinyuk
Soumya M. Turaga
Erin E. Mulkearns-Hubert
James S. Hale
Vinay Rao
Abeba Demelash
Caner Saygin
Arnab China
Tyler J. Alban
Masahiro Hitomi
Luke A. Torre-Healy
Alvaro G. Alvarado
Awad Jarrar
Andrew Wiechert
Valery Adorno-Cruz
Paul L. Fox
Benjamin C. Calhoun
Jun-Lin Guan
Huiping Liu
Ofer Reizes
Justin D. Lathia
author_sort Praveena S. Thiagarajan
title Cx26 drives self-renewal in triple-negative breast cancer via interaction with NANOG and focal adhesion kinase
title_short Cx26 drives self-renewal in triple-negative breast cancer via interaction with NANOG and focal adhesion kinase
title_full Cx26 drives self-renewal in triple-negative breast cancer via interaction with NANOG and focal adhesion kinase
title_fullStr Cx26 drives self-renewal in triple-negative breast cancer via interaction with NANOG and focal adhesion kinase
title_full_unstemmed Cx26 drives self-renewal in triple-negative breast cancer via interaction with NANOG and focal adhesion kinase
title_sort cx26 drives self-renewal in triple-negative breast cancer via interaction with nanog and focal adhesion kinase
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/8069efa147334bedbe33b1e19b4d7241
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