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Pharmacological Inhibition of miR-130 Family Suppresses Bladder Tumor Growth by Targeting Various Oncogenic Pathways via PTPN1

Previously, we have revealed that the miR-130 family (miR-130b, miR-301a, and miR-301b) functions as an oncomiR in bladder cancer. The pharmacological inhibition of the miR-130 family molecules by the seed-targeting strategy with an 8-mer tiny locked nucleic acid (LNA) inhibits the growth, migration...

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Autores principales: Monoe, Yuya, Jingushi, Kentaro, Kawase, Akitaka, Hirono, Takayuki, Hirose, Ryo, Nakatsuji, Yoshino, Kitae, Kaori, Ueda, Yuko, Hase, Hiroaki, Abe, Yuichi, Adachi, Jun, Tomonaga, Takeshi, Tsujikawa, Kazutake
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8124864/
https://www.ncbi.nlm.nih.gov/pubmed/33947152
http://dx.doi.org/10.3390/ijms22094751
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author Monoe, Yuya
Jingushi, Kentaro
Kawase, Akitaka
Hirono, Takayuki
Hirose, Ryo
Nakatsuji, Yoshino
Kitae, Kaori
Ueda, Yuko
Hase, Hiroaki
Abe, Yuichi
Adachi, Jun
Tomonaga, Takeshi
Tsujikawa, Kazutake
author_facet Monoe, Yuya
Jingushi, Kentaro
Kawase, Akitaka
Hirono, Takayuki
Hirose, Ryo
Nakatsuji, Yoshino
Kitae, Kaori
Ueda, Yuko
Hase, Hiroaki
Abe, Yuichi
Adachi, Jun
Tomonaga, Takeshi
Tsujikawa, Kazutake
author_sort Monoe, Yuya
collection PubMed
description Previously, we have revealed that the miR-130 family (miR-130b, miR-301a, and miR-301b) functions as an oncomiR in bladder cancer. The pharmacological inhibition of the miR-130 family molecules by the seed-targeting strategy with an 8-mer tiny locked nucleic acid (LNA) inhibits the growth, migration, and invasion of bladder cancer cells by repressing stress fiber formation. Here, we searched for a functionally advanced target sequence with LNA for the miR-130 family with low cytotoxicity and found LNA #9 (A(L)^i^i^A(L)^T(L)^T(L)^G(L)^5(L)^A(L)^5(L)^T(L)^G) as a candidate LNA. LNA #9 inhibited cell growth in vitro and in an in vivo orthotopic bladder cancer model. Proteome-wide tyrosine phosphorylation analysis suggested that the miR-130 family upregulates a wide range of receptor tyrosine kinases (RTKs) signaling via the expression of phosphorylated Src (pSrc(Tyr416)). SILAC-based proteome analysis and a luciferase assay identified protein tyrosine phosphatase non-receptor type 1 (PTPN1), which is implicated as a negative regulator of multiple signaling pathways downstream of RTKs as a target gene of the miR-130 family. The miR-130-targeted LNA increased and decreased PTPN1 and pSrc(Tyr416) expressions, respectively. PTPN1 knockdown led to increased tumor properties (cell growth, invasion, and migration) and increased pSrc(Tyr416) expression in bladder cancer cells, suggesting that the miR-130 family upregulates multiple RTK signaling by targeting PTPN1 and subsequent Src activation in bladder cancer. Thus, our newly designed miR-130 family targeting LNA could be a promising nucleic acid therapeutic agent for bladder cancer.
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spelling pubmed-81248642021-05-17 Pharmacological Inhibition of miR-130 Family Suppresses Bladder Tumor Growth by Targeting Various Oncogenic Pathways via PTPN1 Monoe, Yuya Jingushi, Kentaro Kawase, Akitaka Hirono, Takayuki Hirose, Ryo Nakatsuji, Yoshino Kitae, Kaori Ueda, Yuko Hase, Hiroaki Abe, Yuichi Adachi, Jun Tomonaga, Takeshi Tsujikawa, Kazutake Int J Mol Sci Article Previously, we have revealed that the miR-130 family (miR-130b, miR-301a, and miR-301b) functions as an oncomiR in bladder cancer. The pharmacological inhibition of the miR-130 family molecules by the seed-targeting strategy with an 8-mer tiny locked nucleic acid (LNA) inhibits the growth, migration, and invasion of bladder cancer cells by repressing stress fiber formation. Here, we searched for a functionally advanced target sequence with LNA for the miR-130 family with low cytotoxicity and found LNA #9 (A(L)^i^i^A(L)^T(L)^T(L)^G(L)^5(L)^A(L)^5(L)^T(L)^G) as a candidate LNA. LNA #9 inhibited cell growth in vitro and in an in vivo orthotopic bladder cancer model. Proteome-wide tyrosine phosphorylation analysis suggested that the miR-130 family upregulates a wide range of receptor tyrosine kinases (RTKs) signaling via the expression of phosphorylated Src (pSrc(Tyr416)). SILAC-based proteome analysis and a luciferase assay identified protein tyrosine phosphatase non-receptor type 1 (PTPN1), which is implicated as a negative regulator of multiple signaling pathways downstream of RTKs as a target gene of the miR-130 family. The miR-130-targeted LNA increased and decreased PTPN1 and pSrc(Tyr416) expressions, respectively. PTPN1 knockdown led to increased tumor properties (cell growth, invasion, and migration) and increased pSrc(Tyr416) expression in bladder cancer cells, suggesting that the miR-130 family upregulates multiple RTK signaling by targeting PTPN1 and subsequent Src activation in bladder cancer. Thus, our newly designed miR-130 family targeting LNA could be a promising nucleic acid therapeutic agent for bladder cancer. MDPI 2021-04-29 /pmc/articles/PMC8124864/ /pubmed/33947152 http://dx.doi.org/10.3390/ijms22094751 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Monoe, Yuya
Jingushi, Kentaro
Kawase, Akitaka
Hirono, Takayuki
Hirose, Ryo
Nakatsuji, Yoshino
Kitae, Kaori
Ueda, Yuko
Hase, Hiroaki
Abe, Yuichi
Adachi, Jun
Tomonaga, Takeshi
Tsujikawa, Kazutake
Pharmacological Inhibition of miR-130 Family Suppresses Bladder Tumor Growth by Targeting Various Oncogenic Pathways via PTPN1
title Pharmacological Inhibition of miR-130 Family Suppresses Bladder Tumor Growth by Targeting Various Oncogenic Pathways via PTPN1
title_full Pharmacological Inhibition of miR-130 Family Suppresses Bladder Tumor Growth by Targeting Various Oncogenic Pathways via PTPN1
title_fullStr Pharmacological Inhibition of miR-130 Family Suppresses Bladder Tumor Growth by Targeting Various Oncogenic Pathways via PTPN1
title_full_unstemmed Pharmacological Inhibition of miR-130 Family Suppresses Bladder Tumor Growth by Targeting Various Oncogenic Pathways via PTPN1
title_short Pharmacological Inhibition of miR-130 Family Suppresses Bladder Tumor Growth by Targeting Various Oncogenic Pathways via PTPN1
title_sort pharmacological inhibition of mir-130 family suppresses bladder tumor growth by targeting various oncogenic pathways via ptpn1
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8124864/
https://www.ncbi.nlm.nih.gov/pubmed/33947152
http://dx.doi.org/10.3390/ijms22094751
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