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IRS-2 deubiquitination by USP9X maintains anchorage-independent cell growth via Erk1/2 activation in prostate carcinoma cell line

Insulin-like growth factors (IGFs) have been shown to induce proliferation of many types of cells. Insulin receptor substrates (IRSs) are major targets of IGF-I receptor (IGF-IR) tyrosine kinase activated by IGFs, and are known to play important roles in the activation of downstream signaling pathwa...

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Autores principales: Furuta, Haruka, Yoshihara, Hidehito, Fukushima, Toshiaki, Yoneyama, Yosuke, Ito, Akihiro, Worrall, Claire, Girnita, Ada, Girnita, Leonard, Yoshida, Minoru, Asano, Tomoichiro, Komada, Masayuki, Kataoka, Naoyuki, Chida, Kazuhiro, Hakuno, Fumihiko, Takahashi, Shin-Ichiro
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6188063/
https://www.ncbi.nlm.nih.gov/pubmed/30338032
http://dx.doi.org/10.18632/oncotarget.26049
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author Furuta, Haruka
Yoshihara, Hidehito
Fukushima, Toshiaki
Yoneyama, Yosuke
Ito, Akihiro
Worrall, Claire
Girnita, Ada
Girnita, Leonard
Yoshida, Minoru
Asano, Tomoichiro
Komada, Masayuki
Kataoka, Naoyuki
Chida, Kazuhiro
Hakuno, Fumihiko
Takahashi, Shin-Ichiro
author_facet Furuta, Haruka
Yoshihara, Hidehito
Fukushima, Toshiaki
Yoneyama, Yosuke
Ito, Akihiro
Worrall, Claire
Girnita, Ada
Girnita, Leonard
Yoshida, Minoru
Asano, Tomoichiro
Komada, Masayuki
Kataoka, Naoyuki
Chida, Kazuhiro
Hakuno, Fumihiko
Takahashi, Shin-Ichiro
author_sort Furuta, Haruka
collection PubMed
description Insulin-like growth factors (IGFs) have been shown to induce proliferation of many types of cells. Insulin receptor substrates (IRSs) are major targets of IGF-I receptor (IGF-IR) tyrosine kinase activated by IGFs, and are known to play important roles in the activation of downstream signaling pathways, such as the Erk1/2 pathway. Dysregulation of IGF signaling represents a central tumor promoting principle in human carcinogenesis. Prostate carcinoma is highly dependent on the IGF/IGF-IR/IRS axis. Here we identified the deubiquitinase, ubiquitin specific peptidase 9X (USP9X) as a novel binding partner of IRS-2. In a human prostate carcinoma cell line, small interfering RNA (siRNA)-mediated knockdown of USP9X reduced IGF-IR as well as IRS-2 protein levels and increased their ubiquitination. Knockdown of USP9X suppressed basal activation of the Erk1/2 pathway, which was significantly restored by exogenous expression of IRS-2 but not by IGF-IR, suggesting that the stabilization of IRS-2 by USP9X is critical for basal Erk1/2 activation. Finally, we measured anchorage-independent cell growth, a characteristic cancer feature, by soft-agar colony formation assay. Knockdown of USP9X significantly reduced anchorage-independent cell growth of prostate carcinoma cell line. Taken all together, our findings indicate that USP9X is required for the promotion of prostate cancer growth by maintaining the activation of the Erk1/2 pathway through IRS-2 stabilization.
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spelling pubmed-61880632018-10-18 IRS-2 deubiquitination by USP9X maintains anchorage-independent cell growth via Erk1/2 activation in prostate carcinoma cell line Furuta, Haruka Yoshihara, Hidehito Fukushima, Toshiaki Yoneyama, Yosuke Ito, Akihiro Worrall, Claire Girnita, Ada Girnita, Leonard Yoshida, Minoru Asano, Tomoichiro Komada, Masayuki Kataoka, Naoyuki Chida, Kazuhiro Hakuno, Fumihiko Takahashi, Shin-Ichiro Oncotarget Research Paper Insulin-like growth factors (IGFs) have been shown to induce proliferation of many types of cells. Insulin receptor substrates (IRSs) are major targets of IGF-I receptor (IGF-IR) tyrosine kinase activated by IGFs, and are known to play important roles in the activation of downstream signaling pathways, such as the Erk1/2 pathway. Dysregulation of IGF signaling represents a central tumor promoting principle in human carcinogenesis. Prostate carcinoma is highly dependent on the IGF/IGF-IR/IRS axis. Here we identified the deubiquitinase, ubiquitin specific peptidase 9X (USP9X) as a novel binding partner of IRS-2. In a human prostate carcinoma cell line, small interfering RNA (siRNA)-mediated knockdown of USP9X reduced IGF-IR as well as IRS-2 protein levels and increased their ubiquitination. Knockdown of USP9X suppressed basal activation of the Erk1/2 pathway, which was significantly restored by exogenous expression of IRS-2 but not by IGF-IR, suggesting that the stabilization of IRS-2 by USP9X is critical for basal Erk1/2 activation. Finally, we measured anchorage-independent cell growth, a characteristic cancer feature, by soft-agar colony formation assay. Knockdown of USP9X significantly reduced anchorage-independent cell growth of prostate carcinoma cell line. Taken all together, our findings indicate that USP9X is required for the promotion of prostate cancer growth by maintaining the activation of the Erk1/2 pathway through IRS-2 stabilization. Impact Journals LLC 2018-09-21 /pmc/articles/PMC6188063/ /pubmed/30338032 http://dx.doi.org/10.18632/oncotarget.26049 Text en Copyright: © 2018 Furuta et al. http://creativecommons.org/licenses/by/3.0/ This article is distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/) (CC-BY), which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Research Paper
Furuta, Haruka
Yoshihara, Hidehito
Fukushima, Toshiaki
Yoneyama, Yosuke
Ito, Akihiro
Worrall, Claire
Girnita, Ada
Girnita, Leonard
Yoshida, Minoru
Asano, Tomoichiro
Komada, Masayuki
Kataoka, Naoyuki
Chida, Kazuhiro
Hakuno, Fumihiko
Takahashi, Shin-Ichiro
IRS-2 deubiquitination by USP9X maintains anchorage-independent cell growth via Erk1/2 activation in prostate carcinoma cell line
title IRS-2 deubiquitination by USP9X maintains anchorage-independent cell growth via Erk1/2 activation in prostate carcinoma cell line
title_full IRS-2 deubiquitination by USP9X maintains anchorage-independent cell growth via Erk1/2 activation in prostate carcinoma cell line
title_fullStr IRS-2 deubiquitination by USP9X maintains anchorage-independent cell growth via Erk1/2 activation in prostate carcinoma cell line
title_full_unstemmed IRS-2 deubiquitination by USP9X maintains anchorage-independent cell growth via Erk1/2 activation in prostate carcinoma cell line
title_short IRS-2 deubiquitination by USP9X maintains anchorage-independent cell growth via Erk1/2 activation in prostate carcinoma cell line
title_sort irs-2 deubiquitination by usp9x maintains anchorage-independent cell growth via erk1/2 activation in prostate carcinoma cell line
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6188063/
https://www.ncbi.nlm.nih.gov/pubmed/30338032
http://dx.doi.org/10.18632/oncotarget.26049
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