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N-Methylparoxetine Blocked Autophagic Flux and Induced Apoptosis by Activating ROS-MAPK Pathway in Non-Small Cell Lung Cancer Cells

The main mechanistic function of most chemotherapeutic drugs is mediated by inducing mitochondria-dependent apoptosis. Tumor cells usually respond to upregulate autophagy to eliminate impaired mitochondria for survival. Hypothetically, inhibiting autophagy might promote mitochondria-dependent apopto...

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Autores principales: Wang, Kun, Chen, Bonan, Yin, Ting, Zhan, Yujuan, Lu, Yuhua, Zhang, Yilin, Chen, Jiawei, Wu, Weijie, Zhou, Shikun, Mao, Wenli, Tan, Yuhui, Du, Biaoyan, Liu, Xiaodong, HO, Hiuting Idy, Xiao, Jianyong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6678301/
https://www.ncbi.nlm.nih.gov/pubmed/31336784
http://dx.doi.org/10.3390/ijms20143415
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author Wang, Kun
Chen, Bonan
Yin, Ting
Zhan, Yujuan
Lu, Yuhua
Zhang, Yilin
Chen, Jiawei
Wu, Weijie
Zhou, Shikun
Mao, Wenli
Tan, Yuhui
Du, Biaoyan
Liu, Xiaodong
HO, Hiuting Idy
Xiao, Jianyong
author_facet Wang, Kun
Chen, Bonan
Yin, Ting
Zhan, Yujuan
Lu, Yuhua
Zhang, Yilin
Chen, Jiawei
Wu, Weijie
Zhou, Shikun
Mao, Wenli
Tan, Yuhui
Du, Biaoyan
Liu, Xiaodong
HO, Hiuting Idy
Xiao, Jianyong
author_sort Wang, Kun
collection PubMed
description The main mechanistic function of most chemotherapeutic drugs is mediated by inducing mitochondria-dependent apoptosis. Tumor cells usually respond to upregulate autophagy to eliminate impaired mitochondria for survival. Hypothetically, inhibiting autophagy might promote mitochondria-dependent apoptosis, thus enhancing the efficacy of chemotherapeutic therapies. We previously identified N-methylparoxetine (NMP) as an inducer of mitochondrial fragmentation with subsequent apoptosis in non-small cell lung cancer (NSCLC) cells. We discovered that ROS was accumulated in NMP-treated NSCLC cells, followed by c-Jun N-terminal kinase (JNK) and p38 MAP kinase (p38) activation. This was reversed by the application of a reactive oxygen species (ROS) scavenger, N-acetylcysteine (NAC), leading to a reduction in apoptosis. Our data suggested that NMP induced apoptosis in NSCLC cells by activating mitogen-activated protein kinase (MAPK) pathway. We further speculated that the remarkable increase of ROS in NMP-treated NSCLC cells might result from an inhibition of autophagy. Our current data confirmed that NMP blocked autophagy flux at late stage wherein lysosomal acidification was inhibited. Taken together, this study demonstrated that NMP could exert dual apoptotic functions—mitochondria impairment and, concomitantly, autophagy inhibition. NMP-related excessive ROS accumulation induced apoptosis by activating the MAPK pathway in NSCLC cells.
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spelling pubmed-66783012019-08-19 N-Methylparoxetine Blocked Autophagic Flux and Induced Apoptosis by Activating ROS-MAPK Pathway in Non-Small Cell Lung Cancer Cells Wang, Kun Chen, Bonan Yin, Ting Zhan, Yujuan Lu, Yuhua Zhang, Yilin Chen, Jiawei Wu, Weijie Zhou, Shikun Mao, Wenli Tan, Yuhui Du, Biaoyan Liu, Xiaodong HO, Hiuting Idy Xiao, Jianyong Int J Mol Sci Article The main mechanistic function of most chemotherapeutic drugs is mediated by inducing mitochondria-dependent apoptosis. Tumor cells usually respond to upregulate autophagy to eliminate impaired mitochondria for survival. Hypothetically, inhibiting autophagy might promote mitochondria-dependent apoptosis, thus enhancing the efficacy of chemotherapeutic therapies. We previously identified N-methylparoxetine (NMP) as an inducer of mitochondrial fragmentation with subsequent apoptosis in non-small cell lung cancer (NSCLC) cells. We discovered that ROS was accumulated in NMP-treated NSCLC cells, followed by c-Jun N-terminal kinase (JNK) and p38 MAP kinase (p38) activation. This was reversed by the application of a reactive oxygen species (ROS) scavenger, N-acetylcysteine (NAC), leading to a reduction in apoptosis. Our data suggested that NMP induced apoptosis in NSCLC cells by activating mitogen-activated protein kinase (MAPK) pathway. We further speculated that the remarkable increase of ROS in NMP-treated NSCLC cells might result from an inhibition of autophagy. Our current data confirmed that NMP blocked autophagy flux at late stage wherein lysosomal acidification was inhibited. Taken together, this study demonstrated that NMP could exert dual apoptotic functions—mitochondria impairment and, concomitantly, autophagy inhibition. NMP-related excessive ROS accumulation induced apoptosis by activating the MAPK pathway in NSCLC cells. MDPI 2019-07-11 /pmc/articles/PMC6678301/ /pubmed/31336784 http://dx.doi.org/10.3390/ijms20143415 Text en © 2019 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Wang, Kun
Chen, Bonan
Yin, Ting
Zhan, Yujuan
Lu, Yuhua
Zhang, Yilin
Chen, Jiawei
Wu, Weijie
Zhou, Shikun
Mao, Wenli
Tan, Yuhui
Du, Biaoyan
Liu, Xiaodong
HO, Hiuting Idy
Xiao, Jianyong
N-Methylparoxetine Blocked Autophagic Flux and Induced Apoptosis by Activating ROS-MAPK Pathway in Non-Small Cell Lung Cancer Cells
title N-Methylparoxetine Blocked Autophagic Flux and Induced Apoptosis by Activating ROS-MAPK Pathway in Non-Small Cell Lung Cancer Cells
title_full N-Methylparoxetine Blocked Autophagic Flux and Induced Apoptosis by Activating ROS-MAPK Pathway in Non-Small Cell Lung Cancer Cells
title_fullStr N-Methylparoxetine Blocked Autophagic Flux and Induced Apoptosis by Activating ROS-MAPK Pathway in Non-Small Cell Lung Cancer Cells
title_full_unstemmed N-Methylparoxetine Blocked Autophagic Flux and Induced Apoptosis by Activating ROS-MAPK Pathway in Non-Small Cell Lung Cancer Cells
title_short N-Methylparoxetine Blocked Autophagic Flux and Induced Apoptosis by Activating ROS-MAPK Pathway in Non-Small Cell Lung Cancer Cells
title_sort n-methylparoxetine blocked autophagic flux and induced apoptosis by activating ros-mapk pathway in non-small cell lung cancer cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6678301/
https://www.ncbi.nlm.nih.gov/pubmed/31336784
http://dx.doi.org/10.3390/ijms20143415
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