Cargando…

Neferine induces autophagy-dependent cell death in apoptosis-resistant cancers via ryanodine receptor and Ca(2+)-dependent mechanism

Resistance of cancer cells to chemotherapy is a significant clinical concern and mechanisms regulating cell death in cancer therapy, including apoptosis, autophagy or necrosis, have been extensively investigated over the last decade. Accordingly, the identification of medicinal compounds against che...

Descripción completa

Detalles Bibliográficos
Autores principales: Law, Betty Yuen Kwan, Michelangeli, Francesco, Qu, Yuan Qing, Xu, Su-Wei, Han, Yu, Mok, Simon Wing Fai, Dias, Ivo Ricardo de Seabra Rodrigues, Javed, Masood-ul-Hassan, Chan, Wai-Kit, Xue, Wei-Wei, Yao, Xiao-Jun, Zeng, Wu, Zhang, Hui, Wang, Jing-Rong, Liu, Liang, Wong, Vincent Kam Wai
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6934498/
https://www.ncbi.nlm.nih.gov/pubmed/31882989
http://dx.doi.org/10.1038/s41598-019-56675-6
_version_ 1783483396351066112
author Law, Betty Yuen Kwan
Michelangeli, Francesco
Qu, Yuan Qing
Xu, Su-Wei
Han, Yu
Mok, Simon Wing Fai
Dias, Ivo Ricardo de Seabra Rodrigues
Javed, Masood-ul-Hassan
Chan, Wai-Kit
Xue, Wei-Wei
Yao, Xiao-Jun
Zeng, Wu
Zhang, Hui
Wang, Jing-Rong
Liu, Liang
Wong, Vincent Kam Wai
author_facet Law, Betty Yuen Kwan
Michelangeli, Francesco
Qu, Yuan Qing
Xu, Su-Wei
Han, Yu
Mok, Simon Wing Fai
Dias, Ivo Ricardo de Seabra Rodrigues
Javed, Masood-ul-Hassan
Chan, Wai-Kit
Xue, Wei-Wei
Yao, Xiao-Jun
Zeng, Wu
Zhang, Hui
Wang, Jing-Rong
Liu, Liang
Wong, Vincent Kam Wai
author_sort Law, Betty Yuen Kwan
collection PubMed
description Resistance of cancer cells to chemotherapy is a significant clinical concern and mechanisms regulating cell death in cancer therapy, including apoptosis, autophagy or necrosis, have been extensively investigated over the last decade. Accordingly, the identification of medicinal compounds against chemoresistant cancer cells via new mechanism of action is highly desired. Autophagy is important in inducing cell death or survival in cancer therapy. Recently, novel autophagy activators isolated from natural products were shown to induce autophagic cell death in apoptosis-resistant cancer cells in a calcium-dependent manner. Therefore, enhancement of autophagy may serve as additional therapeutic strategy against these resistant cancers. By computational docking analysis, biochemical assays, and advanced live-cell imaging, we identified that neferine, a natural alkaloid from Nelumbo nucifera, induces autophagy by activating the ryanodine receptor and calcium release. With well-known apoptotic agents, such as staurosporine, taxol, doxorubicin, cisplatin and etoposide, utilized as controls, neferine was shown to induce autophagic cell death in a panel of cancer cells, including apoptosis-defective and -resistant cancer cells or isogenic cancer cells, via calcium mobilization through the activation of ryanodine receptor and Ulk-1-PERK and AMPK-mTOR signaling cascades. Taken together, this study provides insights into the cytotoxic mechanism of neferine-induced autophagy through ryanodine receptor activation in resistant cancers.
format Online
Article
Text
id pubmed-6934498
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher Nature Publishing Group UK
record_format MEDLINE/PubMed
spelling pubmed-69344982019-12-29 Neferine induces autophagy-dependent cell death in apoptosis-resistant cancers via ryanodine receptor and Ca(2+)-dependent mechanism Law, Betty Yuen Kwan Michelangeli, Francesco Qu, Yuan Qing Xu, Su-Wei Han, Yu Mok, Simon Wing Fai Dias, Ivo Ricardo de Seabra Rodrigues Javed, Masood-ul-Hassan Chan, Wai-Kit Xue, Wei-Wei Yao, Xiao-Jun Zeng, Wu Zhang, Hui Wang, Jing-Rong Liu, Liang Wong, Vincent Kam Wai Sci Rep Article Resistance of cancer cells to chemotherapy is a significant clinical concern and mechanisms regulating cell death in cancer therapy, including apoptosis, autophagy or necrosis, have been extensively investigated over the last decade. Accordingly, the identification of medicinal compounds against chemoresistant cancer cells via new mechanism of action is highly desired. Autophagy is important in inducing cell death or survival in cancer therapy. Recently, novel autophagy activators isolated from natural products were shown to induce autophagic cell death in apoptosis-resistant cancer cells in a calcium-dependent manner. Therefore, enhancement of autophagy may serve as additional therapeutic strategy against these resistant cancers. By computational docking analysis, biochemical assays, and advanced live-cell imaging, we identified that neferine, a natural alkaloid from Nelumbo nucifera, induces autophagy by activating the ryanodine receptor and calcium release. With well-known apoptotic agents, such as staurosporine, taxol, doxorubicin, cisplatin and etoposide, utilized as controls, neferine was shown to induce autophagic cell death in a panel of cancer cells, including apoptosis-defective and -resistant cancer cells or isogenic cancer cells, via calcium mobilization through the activation of ryanodine receptor and Ulk-1-PERK and AMPK-mTOR signaling cascades. Taken together, this study provides insights into the cytotoxic mechanism of neferine-induced autophagy through ryanodine receptor activation in resistant cancers. Nature Publishing Group UK 2019-12-27 /pmc/articles/PMC6934498/ /pubmed/31882989 http://dx.doi.org/10.1038/s41598-019-56675-6 Text en © The Author(s) 2019 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Law, Betty Yuen Kwan
Michelangeli, Francesco
Qu, Yuan Qing
Xu, Su-Wei
Han, Yu
Mok, Simon Wing Fai
Dias, Ivo Ricardo de Seabra Rodrigues
Javed, Masood-ul-Hassan
Chan, Wai-Kit
Xue, Wei-Wei
Yao, Xiao-Jun
Zeng, Wu
Zhang, Hui
Wang, Jing-Rong
Liu, Liang
Wong, Vincent Kam Wai
Neferine induces autophagy-dependent cell death in apoptosis-resistant cancers via ryanodine receptor and Ca(2+)-dependent mechanism
title Neferine induces autophagy-dependent cell death in apoptosis-resistant cancers via ryanodine receptor and Ca(2+)-dependent mechanism
title_full Neferine induces autophagy-dependent cell death in apoptosis-resistant cancers via ryanodine receptor and Ca(2+)-dependent mechanism
title_fullStr Neferine induces autophagy-dependent cell death in apoptosis-resistant cancers via ryanodine receptor and Ca(2+)-dependent mechanism
title_full_unstemmed Neferine induces autophagy-dependent cell death in apoptosis-resistant cancers via ryanodine receptor and Ca(2+)-dependent mechanism
title_short Neferine induces autophagy-dependent cell death in apoptosis-resistant cancers via ryanodine receptor and Ca(2+)-dependent mechanism
title_sort neferine induces autophagy-dependent cell death in apoptosis-resistant cancers via ryanodine receptor and ca(2+)-dependent mechanism
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6934498/
https://www.ncbi.nlm.nih.gov/pubmed/31882989
http://dx.doi.org/10.1038/s41598-019-56675-6
work_keys_str_mv AT lawbettyyuenkwan neferineinducesautophagydependentcelldeathinapoptosisresistantcancersviaryanodinereceptorandca2dependentmechanism
AT michelangelifrancesco neferineinducesautophagydependentcelldeathinapoptosisresistantcancersviaryanodinereceptorandca2dependentmechanism
AT quyuanqing neferineinducesautophagydependentcelldeathinapoptosisresistantcancersviaryanodinereceptorandca2dependentmechanism
AT xusuwei neferineinducesautophagydependentcelldeathinapoptosisresistantcancersviaryanodinereceptorandca2dependentmechanism
AT hanyu neferineinducesautophagydependentcelldeathinapoptosisresistantcancersviaryanodinereceptorandca2dependentmechanism
AT moksimonwingfai neferineinducesautophagydependentcelldeathinapoptosisresistantcancersviaryanodinereceptorandca2dependentmechanism
AT diasivoricardodeseabrarodrigues neferineinducesautophagydependentcelldeathinapoptosisresistantcancersviaryanodinereceptorandca2dependentmechanism
AT javedmasoodulhassan neferineinducesautophagydependentcelldeathinapoptosisresistantcancersviaryanodinereceptorandca2dependentmechanism
AT chanwaikit neferineinducesautophagydependentcelldeathinapoptosisresistantcancersviaryanodinereceptorandca2dependentmechanism
AT xueweiwei neferineinducesautophagydependentcelldeathinapoptosisresistantcancersviaryanodinereceptorandca2dependentmechanism
AT yaoxiaojun neferineinducesautophagydependentcelldeathinapoptosisresistantcancersviaryanodinereceptorandca2dependentmechanism
AT zengwu neferineinducesautophagydependentcelldeathinapoptosisresistantcancersviaryanodinereceptorandca2dependentmechanism
AT zhanghui neferineinducesautophagydependentcelldeathinapoptosisresistantcancersviaryanodinereceptorandca2dependentmechanism
AT wangjingrong neferineinducesautophagydependentcelldeathinapoptosisresistantcancersviaryanodinereceptorandca2dependentmechanism
AT liuliang neferineinducesautophagydependentcelldeathinapoptosisresistantcancersviaryanodinereceptorandca2dependentmechanism
AT wongvincentkamwai neferineinducesautophagydependentcelldeathinapoptosisresistantcancersviaryanodinereceptorandca2dependentmechanism