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Conditional Ror1 knockout reveals crucial involvement in lung adenocarcinoma development and identifies novel HIF‐1α regulator

We previously reported that ROR1 is a crucial downstream gene for the TTF‐1/NKX2‐1 lineage‐survival oncogene in lung adenocarcinoma, while others have found altered expression of ROR1 in multiple cancer types. Accumulated evidence therefore indicates ROR1 as an attractive molecular target, though it...

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Autores principales: Isomura, Hisanori, Taguchi, Ayumu, Kajino, Taisuke, Asai, Naoya, Nakatochi, Masahiro, Kato, Seiichi, Suzuki, Keiko, Yanagisawa, Kiyoshi, Suzuki, Motoshi, Fujishita, Teruaki, Yamaguchi, Tomoya, Takahashi, Masahide, Takahashi, Takashi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8019194/
https://www.ncbi.nlm.nih.gov/pubmed/33506575
http://dx.doi.org/10.1111/cas.14825
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author Isomura, Hisanori
Taguchi, Ayumu
Kajino, Taisuke
Asai, Naoya
Nakatochi, Masahiro
Kato, Seiichi
Suzuki, Keiko
Yanagisawa, Kiyoshi
Suzuki, Motoshi
Fujishita, Teruaki
Yamaguchi, Tomoya
Takahashi, Masahide
Takahashi, Takashi
author_facet Isomura, Hisanori
Taguchi, Ayumu
Kajino, Taisuke
Asai, Naoya
Nakatochi, Masahiro
Kato, Seiichi
Suzuki, Keiko
Yanagisawa, Kiyoshi
Suzuki, Motoshi
Fujishita, Teruaki
Yamaguchi, Tomoya
Takahashi, Masahide
Takahashi, Takashi
author_sort Isomura, Hisanori
collection PubMed
description We previously reported that ROR1 is a crucial downstream gene for the TTF‐1/NKX2‐1 lineage‐survival oncogene in lung adenocarcinoma, while others have found altered expression of ROR1 in multiple cancer types. Accumulated evidence therefore indicates ROR1 as an attractive molecular target, though it has yet to be determined whether targeting Ror1 can inhibit tumor development and growth in vivo. To this end, genetically engineered mice carrying homozygously floxed Ror1 alleles and an SP‐C promoter–driven human mutant EGFR transgene were generated. Ror1 ablation resulted in marked retardation of tumor development and progression in association with reduced malignant characteristics and significantly better survival. Interestingly, gene set enrichment analysis identified a hypoxia‐induced gene set (HALLMARK_HYPOXIA) as most significantly downregulated by Ror1 ablation in vivo, which led to findings showing that ROR1 knockdown diminished HIF‐1α expression under normoxia and clearly hampered HIF‐1α induction in response to hypoxia in human lung adenocarcinoma cell lines. The present results directly demonstrate the importance of Ror1 for in vivo development and progression of lung adenocarcinoma, and also identify Ror1 as a novel regulator of Hif‐1α. Thus, a future study aimed at the development of a novel therapeutic targeting ROR1 for treatment of solid tumors such as seen in lung cancer, which are frequently accompanied with a hypoxic tumor microenvironment, is warranted.
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spelling pubmed-80191942021-04-08 Conditional Ror1 knockout reveals crucial involvement in lung adenocarcinoma development and identifies novel HIF‐1α regulator Isomura, Hisanori Taguchi, Ayumu Kajino, Taisuke Asai, Naoya Nakatochi, Masahiro Kato, Seiichi Suzuki, Keiko Yanagisawa, Kiyoshi Suzuki, Motoshi Fujishita, Teruaki Yamaguchi, Tomoya Takahashi, Masahide Takahashi, Takashi Cancer Sci ORIGINAL ARTICLES We previously reported that ROR1 is a crucial downstream gene for the TTF‐1/NKX2‐1 lineage‐survival oncogene in lung adenocarcinoma, while others have found altered expression of ROR1 in multiple cancer types. Accumulated evidence therefore indicates ROR1 as an attractive molecular target, though it has yet to be determined whether targeting Ror1 can inhibit tumor development and growth in vivo. To this end, genetically engineered mice carrying homozygously floxed Ror1 alleles and an SP‐C promoter–driven human mutant EGFR transgene were generated. Ror1 ablation resulted in marked retardation of tumor development and progression in association with reduced malignant characteristics and significantly better survival. Interestingly, gene set enrichment analysis identified a hypoxia‐induced gene set (HALLMARK_HYPOXIA) as most significantly downregulated by Ror1 ablation in vivo, which led to findings showing that ROR1 knockdown diminished HIF‐1α expression under normoxia and clearly hampered HIF‐1α induction in response to hypoxia in human lung adenocarcinoma cell lines. The present results directly demonstrate the importance of Ror1 for in vivo development and progression of lung adenocarcinoma, and also identify Ror1 as a novel regulator of Hif‐1α. Thus, a future study aimed at the development of a novel therapeutic targeting ROR1 for treatment of solid tumors such as seen in lung cancer, which are frequently accompanied with a hypoxic tumor microenvironment, is warranted. John Wiley and Sons Inc. 2021-02-19 2021-04 /pmc/articles/PMC8019194/ /pubmed/33506575 http://dx.doi.org/10.1111/cas.14825 Text en © 2021 The Authors. Cancer Science published by John Wiley & Sons Australia, Ltd on behalf of Japanese Cancer Association. This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle ORIGINAL ARTICLES
Isomura, Hisanori
Taguchi, Ayumu
Kajino, Taisuke
Asai, Naoya
Nakatochi, Masahiro
Kato, Seiichi
Suzuki, Keiko
Yanagisawa, Kiyoshi
Suzuki, Motoshi
Fujishita, Teruaki
Yamaguchi, Tomoya
Takahashi, Masahide
Takahashi, Takashi
Conditional Ror1 knockout reveals crucial involvement in lung adenocarcinoma development and identifies novel HIF‐1α regulator
title Conditional Ror1 knockout reveals crucial involvement in lung adenocarcinoma development and identifies novel HIF‐1α regulator
title_full Conditional Ror1 knockout reveals crucial involvement in lung adenocarcinoma development and identifies novel HIF‐1α regulator
title_fullStr Conditional Ror1 knockout reveals crucial involvement in lung adenocarcinoma development and identifies novel HIF‐1α regulator
title_full_unstemmed Conditional Ror1 knockout reveals crucial involvement in lung adenocarcinoma development and identifies novel HIF‐1α regulator
title_short Conditional Ror1 knockout reveals crucial involvement in lung adenocarcinoma development and identifies novel HIF‐1α regulator
title_sort conditional ror1 knockout reveals crucial involvement in lung adenocarcinoma development and identifies novel hif‐1α regulator
topic ORIGINAL ARTICLES
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8019194/
https://www.ncbi.nlm.nih.gov/pubmed/33506575
http://dx.doi.org/10.1111/cas.14825
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