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Increased Autophagy Levels Mediate Cisplatin Resistance in Cisplatin-Resistant Cells While Also Rendering Them Vulnerable to Autophagy Induction

Autophagy plays an important role in tumor development because of its capacity to maintain energy homeostasis by recycling damaged intracellular proteins and organelles, and increased autophagy levels are reported to mediate drug resistance in many cancers. However, whether high autophagy levels neg...

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Autores principales: Duan, Guihua, Song, Zhengji, Qi, Min, Bai, Xuan, Wang, Jingzhai, Zhang, Yu, Zou, Xiaoping, Guo, Qiang, Wan, Ping
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6260253/
https://www.ncbi.nlm.nih.gov/pubmed/30539004
http://dx.doi.org/10.1155/2018/1736738
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author Duan, Guihua
Song, Zhengji
Qi, Min
Bai, Xuan
Wang, Jingzhai
Zhang, Yu
Zou, Xiaoping
Guo, Qiang
Wan, Ping
author_facet Duan, Guihua
Song, Zhengji
Qi, Min
Bai, Xuan
Wang, Jingzhai
Zhang, Yu
Zou, Xiaoping
Guo, Qiang
Wan, Ping
author_sort Duan, Guihua
collection PubMed
description Autophagy plays an important role in tumor development because of its capacity to maintain energy homeostasis by recycling damaged intracellular proteins and organelles, and increased autophagy levels are reported to mediate drug resistance in many cancers. However, whether high autophagy levels negatively impact tumor cell growth is unknown. Herein, we found that cisplatin (ddp)-resistant cells were more sensitive to glutamine (Gln) deprivation than ddp-sensitive cells, and they showed significant G1 arrest and increased apoptosis rates under Gln-deficient conditions. Furthermore, ddp-resistant cells had a higher level of autophagy, which mediated ddp resistance. Further analysis indicated that Gln deficiency could trigger apoptosis by enhancing activation of the autophagy signaling pathway AMPK/ULK1 in ddp-resistant cells due to their high basal autophagy level. Interestingly, ddp-resistant cells were more sensitive to rapamycin, and rapamycin could efficiently suppress the growth of ddp-resistant cells in vivo. Taken together, our study demonstrated that ddp-resistant cells became vulnerable to Gln deprivation because of their increased level of autophagy, and for the first time, we showed that suppressing the growth of ddp-resistant cells via enhancing autophagy induction was possible with rapamycin treatment.
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spelling pubmed-62602532018-12-11 Increased Autophagy Levels Mediate Cisplatin Resistance in Cisplatin-Resistant Cells While Also Rendering Them Vulnerable to Autophagy Induction Duan, Guihua Song, Zhengji Qi, Min Bai, Xuan Wang, Jingzhai Zhang, Yu Zou, Xiaoping Guo, Qiang Wan, Ping Biomed Res Int Research Article Autophagy plays an important role in tumor development because of its capacity to maintain energy homeostasis by recycling damaged intracellular proteins and organelles, and increased autophagy levels are reported to mediate drug resistance in many cancers. However, whether high autophagy levels negatively impact tumor cell growth is unknown. Herein, we found that cisplatin (ddp)-resistant cells were more sensitive to glutamine (Gln) deprivation than ddp-sensitive cells, and they showed significant G1 arrest and increased apoptosis rates under Gln-deficient conditions. Furthermore, ddp-resistant cells had a higher level of autophagy, which mediated ddp resistance. Further analysis indicated that Gln deficiency could trigger apoptosis by enhancing activation of the autophagy signaling pathway AMPK/ULK1 in ddp-resistant cells due to their high basal autophagy level. Interestingly, ddp-resistant cells were more sensitive to rapamycin, and rapamycin could efficiently suppress the growth of ddp-resistant cells in vivo. Taken together, our study demonstrated that ddp-resistant cells became vulnerable to Gln deprivation because of their increased level of autophagy, and for the first time, we showed that suppressing the growth of ddp-resistant cells via enhancing autophagy induction was possible with rapamycin treatment. Hindawi 2018-11-12 /pmc/articles/PMC6260253/ /pubmed/30539004 http://dx.doi.org/10.1155/2018/1736738 Text en Copyright © 2018 Guihua Duan et al. https://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Duan, Guihua
Song, Zhengji
Qi, Min
Bai, Xuan
Wang, Jingzhai
Zhang, Yu
Zou, Xiaoping
Guo, Qiang
Wan, Ping
Increased Autophagy Levels Mediate Cisplatin Resistance in Cisplatin-Resistant Cells While Also Rendering Them Vulnerable to Autophagy Induction
title Increased Autophagy Levels Mediate Cisplatin Resistance in Cisplatin-Resistant Cells While Also Rendering Them Vulnerable to Autophagy Induction
title_full Increased Autophagy Levels Mediate Cisplatin Resistance in Cisplatin-Resistant Cells While Also Rendering Them Vulnerable to Autophagy Induction
title_fullStr Increased Autophagy Levels Mediate Cisplatin Resistance in Cisplatin-Resistant Cells While Also Rendering Them Vulnerable to Autophagy Induction
title_full_unstemmed Increased Autophagy Levels Mediate Cisplatin Resistance in Cisplatin-Resistant Cells While Also Rendering Them Vulnerable to Autophagy Induction
title_short Increased Autophagy Levels Mediate Cisplatin Resistance in Cisplatin-Resistant Cells While Also Rendering Them Vulnerable to Autophagy Induction
title_sort increased autophagy levels mediate cisplatin resistance in cisplatin-resistant cells while also rendering them vulnerable to autophagy induction
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6260253/
https://www.ncbi.nlm.nih.gov/pubmed/30539004
http://dx.doi.org/10.1155/2018/1736738
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