Targeting the Notch-regulated non-coding RNA TUG1 for glioma treatment
Self-renewal of cancer stem cells can contribute to glioma progression. Here, the authors show that Notch1 activation in glioma stem cells induces expression of the lncRNATUG1, which promotes self-renewal through the repression of differentiation genes, and that targeting TUG1 represses glioma growt...
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Nature Portfolio
2016
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oai:doaj.org-article:36464f0713394d1ea6623709d1ee83d92021-12-02T16:57:28ZTargeting the Notch-regulated non-coding RNA TUG1 for glioma treatment10.1038/ncomms136162041-1723https://doaj.org/article/36464f0713394d1ea6623709d1ee83d92016-12-01T00:00:00Zhttps://doi.org/10.1038/ncomms13616https://doaj.org/toc/2041-1723Self-renewal of cancer stem cells can contribute to glioma progression. Here, the authors show that Notch1 activation in glioma stem cells induces expression of the lncRNATUG1, which promotes self-renewal through the repression of differentiation genes, and that targeting TUG1 represses glioma growth in vivo.Keisuke KatsushimaAtsushi NatsumeFumiharu OhkaKeiko ShinjoAkira HatanakaNorihisa IchimuraShinya SatoSatoru TakahashiHiroshi KimuraYasushi TotokiTatsuhiro ShibataMitsuru NaitoHyun Jin KimKanjiro MiyataKazunori KataokaYutaka KondoNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-14 (2016) |
institution |
DOAJ |
collection |
DOAJ |
language |
EN |
topic |
Science Q |
spellingShingle |
Science Q Keisuke Katsushima Atsushi Natsume Fumiharu Ohka Keiko Shinjo Akira Hatanaka Norihisa Ichimura Shinya Sato Satoru Takahashi Hiroshi Kimura Yasushi Totoki Tatsuhiro Shibata Mitsuru Naito Hyun Jin Kim Kanjiro Miyata Kazunori Kataoka Yutaka Kondo Targeting the Notch-regulated non-coding RNA TUG1 for glioma treatment |
description |
Self-renewal of cancer stem cells can contribute to glioma progression. Here, the authors show that Notch1 activation in glioma stem cells induces expression of the lncRNATUG1, which promotes self-renewal through the repression of differentiation genes, and that targeting TUG1 represses glioma growth in vivo. |
format |
article |
author |
Keisuke Katsushima Atsushi Natsume Fumiharu Ohka Keiko Shinjo Akira Hatanaka Norihisa Ichimura Shinya Sato Satoru Takahashi Hiroshi Kimura Yasushi Totoki Tatsuhiro Shibata Mitsuru Naito Hyun Jin Kim Kanjiro Miyata Kazunori Kataoka Yutaka Kondo |
author_facet |
Keisuke Katsushima Atsushi Natsume Fumiharu Ohka Keiko Shinjo Akira Hatanaka Norihisa Ichimura Shinya Sato Satoru Takahashi Hiroshi Kimura Yasushi Totoki Tatsuhiro Shibata Mitsuru Naito Hyun Jin Kim Kanjiro Miyata Kazunori Kataoka Yutaka Kondo |
author_sort |
Keisuke Katsushima |
title |
Targeting the Notch-regulated non-coding RNA TUG1 for glioma treatment |
title_short |
Targeting the Notch-regulated non-coding RNA TUG1 for glioma treatment |
title_full |
Targeting the Notch-regulated non-coding RNA TUG1 for glioma treatment |
title_fullStr |
Targeting the Notch-regulated non-coding RNA TUG1 for glioma treatment |
title_full_unstemmed |
Targeting the Notch-regulated non-coding RNA TUG1 for glioma treatment |
title_sort |
targeting the notch-regulated non-coding rna tug1 for glioma treatment |
publisher |
Nature Portfolio |
publishDate |
2016 |
url |
https://doaj.org/article/36464f0713394d1ea6623709d1ee83d9 |
work_keys_str_mv |
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