HEATR1 modulates cell survival in non-small cell lung cancer via activation of the p53/PUMA signaling pathway

Saifei He,1,* Xing Ma,2,* Ying Ye,1 Miao Zhang,1 Juhua Zhuang,2 Yanan Song,1 Wei Xia21Central Laboratory, Seventh People’s Hospital of Shanghai University of Traditional Chinese Medicine, Shanghai, People’s Republic of China; 2Department of Nuclear Medicine, Seventh People&rs...

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Main Authors: He S, Ma X, Ye Y, Zhang M, Zhuang J, Song Y, Xia W
Format: Article
Language:English
Published: Dove Medical Press 2019-05-01
Series:OncoTargets and Therapy
Subjects:
p53
Online Access:https://www.dovepress.com/heatr1-modulates-cell-survival-in-non-small-cell-lung-cancer-via-activ-peer-reviewed-article-OTT
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spelling doaj-10efe165d44444ee986fbacef93c60ac2020-11-25T01:56:39ZengDove Medical PressOncoTargets and Therapy1178-69302019-05-01Volume 124001401145937HEATR1 modulates cell survival in non-small cell lung cancer via activation of the p53/PUMA signaling pathwayHe SMa XYe YZhang MZhuang JSong YXia WSaifei He,1,* Xing Ma,2,* Ying Ye,1 Miao Zhang,1 Juhua Zhuang,2 Yanan Song,1 Wei Xia21Central Laboratory, Seventh People’s Hospital of Shanghai University of Traditional Chinese Medicine, Shanghai, People’s Republic of China; 2Department of Nuclear Medicine, Seventh People’s Hospital of Shanghai University of Traditional Chinese Medicine, Shanghai, People’s Republic of China*These authors contributed equally to this workAim: To determine the mechanisms of HEATR1 on cell survival in non-small cell lung cancer (NSCLC).Methods: HEATR1 mRNA expression levels in 57 pairs of NSCLC tumor and adjacent normal lung tissues were analyzed using the TCGA database. The effect of HEATR1 inhibition on cell proliferation, apoptosis, and colony formation was measured in A549 and NCI-H460 cells lines. In addition, the effect of HEATR1 inhibition on tumor growth was measured using in vivo xenograft nude mouse models. Additionally, downstream signaling pathways affected by HEATR1 inhibition were analyzed using microarrays and bioinformatics analysis, and were validated using quantitative real-time polymerase chain reaction and Western blot analysis.Results: HEATR1 levels were significantly higher in NSCLC tumor tissues compared to normal adjacent lung tissues (P<0.001). In vitro, cell proliferation was significantly reduced in both A549 and NCI-H1299 cells transduced with shHEATR1 compared to shCtrl (P<0.001). Colony formation was also significantly reduced after HEATR1 interference (P<0.01). Additionally, the percentage of apoptosis was significantly increased in cells transduced with shHEATR1 (P<0.001). In vivo, HEATR1 inhibition significantly reduced xenograft tumor growth in nude mice. HEATR1 inhibition drastically affected the p53-signaling pathway, significantly up-regulating PUMA and BAX both at the mRNA and protein levels (P<0.001), while BCL2 levels were significantly down-regulated (P<0.01). The cell proliferation and apoptosis were recovered in cell transduced with shHEATR1 and shp53 compared to shHEATR1 (P<0.05).Conclusion: HEATR1 inhibition activated p53 by reducing ribosome biogenesis, which subsequently led to NSCLC cell apoptosis and reduced cell survival through the p53-PUMA-BAX/BCL2 axis. Our results provide a mechanism by which therapeutic modulation of HEATR1 could be a treatment strategy for NSCLC. In addition, HEATR1 could be used as a potential biomarker for the prognosis or therapeutic evaluation of NSCLC.Keywords: HEATR1, non-small cell lung cancer, p53, PUMA, cell survivalhttps://www.dovepress.com/heatr1-modulates-cell-survival-in-non-small-cell-lung-cancer-via-activ-peer-reviewed-article-OTTHEATR1non-small cell lung cancerp53PUMAcell survival
collection DOAJ
language English
format Article
sources DOAJ
author He S
Ma X
Ye Y
Zhang M
Zhuang J
Song Y
Xia W
spellingShingle He S
Ma X
Ye Y
Zhang M
Zhuang J
Song Y
Xia W
HEATR1 modulates cell survival in non-small cell lung cancer via activation of the p53/PUMA signaling pathway
OncoTargets and Therapy
HEATR1
non-small cell lung cancer
p53
PUMA
cell survival
author_facet He S
Ma X
Ye Y
Zhang M
Zhuang J
Song Y
Xia W
author_sort He S
title HEATR1 modulates cell survival in non-small cell lung cancer via activation of the p53/PUMA signaling pathway
title_short HEATR1 modulates cell survival in non-small cell lung cancer via activation of the p53/PUMA signaling pathway
title_full HEATR1 modulates cell survival in non-small cell lung cancer via activation of the p53/PUMA signaling pathway
title_fullStr HEATR1 modulates cell survival in non-small cell lung cancer via activation of the p53/PUMA signaling pathway
title_full_unstemmed HEATR1 modulates cell survival in non-small cell lung cancer via activation of the p53/PUMA signaling pathway
title_sort heatr1 modulates cell survival in non-small cell lung cancer via activation of the p53/puma signaling pathway
publisher Dove Medical Press
series OncoTargets and Therapy
issn 1178-6930
publishDate 2019-05-01
description Saifei He,1,* Xing Ma,2,* Ying Ye,1 Miao Zhang,1 Juhua Zhuang,2 Yanan Song,1 Wei Xia21Central Laboratory, Seventh People’s Hospital of Shanghai University of Traditional Chinese Medicine, Shanghai, People’s Republic of China; 2Department of Nuclear Medicine, Seventh People’s Hospital of Shanghai University of Traditional Chinese Medicine, Shanghai, People’s Republic of China*These authors contributed equally to this workAim: To determine the mechanisms of HEATR1 on cell survival in non-small cell lung cancer (NSCLC).Methods: HEATR1 mRNA expression levels in 57 pairs of NSCLC tumor and adjacent normal lung tissues were analyzed using the TCGA database. The effect of HEATR1 inhibition on cell proliferation, apoptosis, and colony formation was measured in A549 and NCI-H460 cells lines. In addition, the effect of HEATR1 inhibition on tumor growth was measured using in vivo xenograft nude mouse models. Additionally, downstream signaling pathways affected by HEATR1 inhibition were analyzed using microarrays and bioinformatics analysis, and were validated using quantitative real-time polymerase chain reaction and Western blot analysis.Results: HEATR1 levels were significantly higher in NSCLC tumor tissues compared to normal adjacent lung tissues (P<0.001). In vitro, cell proliferation was significantly reduced in both A549 and NCI-H1299 cells transduced with shHEATR1 compared to shCtrl (P<0.001). Colony formation was also significantly reduced after HEATR1 interference (P<0.01). Additionally, the percentage of apoptosis was significantly increased in cells transduced with shHEATR1 (P<0.001). In vivo, HEATR1 inhibition significantly reduced xenograft tumor growth in nude mice. HEATR1 inhibition drastically affected the p53-signaling pathway, significantly up-regulating PUMA and BAX both at the mRNA and protein levels (P<0.001), while BCL2 levels were significantly down-regulated (P<0.01). The cell proliferation and apoptosis were recovered in cell transduced with shHEATR1 and shp53 compared to shHEATR1 (P<0.05).Conclusion: HEATR1 inhibition activated p53 by reducing ribosome biogenesis, which subsequently led to NSCLC cell apoptosis and reduced cell survival through the p53-PUMA-BAX/BCL2 axis. Our results provide a mechanism by which therapeutic modulation of HEATR1 could be a treatment strategy for NSCLC. In addition, HEATR1 could be used as a potential biomarker for the prognosis or therapeutic evaluation of NSCLC.Keywords: HEATR1, non-small cell lung cancer, p53, PUMA, cell survival
topic HEATR1
non-small cell lung cancer
p53
PUMA
cell survival
url https://www.dovepress.com/heatr1-modulates-cell-survival-in-non-small-cell-lung-cancer-via-activ-peer-reviewed-article-OTT
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