Cargando…

B5, a thioredoxin reductase inhibitor, induces apoptosis in human cervical cancer cells by suppressing the thioredoxin system, disrupting mitochondrion-dependent pathways and triggering autophagy

The synthetic curcumin analog B5 is a potent inhibitor of thioredoxin reductase (TrxR) that has potential anticancer effects. The molecular mechanism underlying B5 as an anticancer agent is not yet fully understood. In this study, we report that B5 induces apoptosis in two human cervical cancer cell...

Descripción completa

Detalles Bibliográficos
Autores principales: Shao, Fang-Yuan, Du, Zhi-Yun, Ma, Dong-Lei, Chen, Wen-Bo, Fu, Wu-Yu, Ruan, Bi-Bo, Rui, Wen, Zhang, Jia-Xuan, Wang, Sheng, Wong, Nai Sum, Xiao, Hao, Li, Man-Mei, Liu, Xiao, Liu, Qiu-Ying, Zhou, Xiao-dong, Yan, Hai-Zhao, Wang, Yi-Fei, Chen, Chang-Yan, Liu, Zhong, Chen, Hong-Yuan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4741579/
https://www.ncbi.nlm.nih.gov/pubmed/26439985
_version_ 1782414022895730688
author Shao, Fang-Yuan
Du, Zhi-Yun
Ma, Dong-Lei
Chen, Wen-Bo
Fu, Wu-Yu
Ruan, Bi-Bo
Rui, Wen
Zhang, Jia-Xuan
Wang, Sheng
Wong, Nai Sum
Xiao, Hao
Li, Man-Mei
Liu, Xiao
Liu, Qiu-Ying
Zhou, Xiao-dong
Yan, Hai-Zhao
Wang, Yi-Fei
Chen, Chang-Yan
Liu, Zhong
Chen, Hong-Yuan
author_facet Shao, Fang-Yuan
Du, Zhi-Yun
Ma, Dong-Lei
Chen, Wen-Bo
Fu, Wu-Yu
Ruan, Bi-Bo
Rui, Wen
Zhang, Jia-Xuan
Wang, Sheng
Wong, Nai Sum
Xiao, Hao
Li, Man-Mei
Liu, Xiao
Liu, Qiu-Ying
Zhou, Xiao-dong
Yan, Hai-Zhao
Wang, Yi-Fei
Chen, Chang-Yan
Liu, Zhong
Chen, Hong-Yuan
author_sort Shao, Fang-Yuan
collection PubMed
description The synthetic curcumin analog B5 is a potent inhibitor of thioredoxin reductase (TrxR) that has potential anticancer effects. The molecular mechanism underlying B5 as an anticancer agent is not yet fully understood. In this study, we report that B5 induces apoptosis in two human cervical cancer cell lines, CaSki and SiHa, as evidenced by the downregulation of XIAP, activation of caspases and cleavage of PARP. The involvement of the mitochondrial pathway in B5-induced apoptosis was suggested by the dissipation of mitochondrial membrane potential and increased expression of pro-apoptotic Bcl-2 family proteins. In B5-treated cells, TrxR activity was markedly inhibited with concomitant accumulation of oxidized thioredoxin, increased formation of reactive oxygen species (ROS), and activation of ASK1 and its downstream regulatory target p38/JNK. B5-induced apoptosis was significantly inhibited in the presence of N-acetyl-l-cysteine. Microscopic examination of B5-treated cells revealed increased presence of cytoplasmic vacuoles. The ability of B5 to activate autophagy in cells was subsequently confirmed by cell staining with acridine orange, accumulation of LC3-II, and measurement of autophagic flux. Unlike B5-induced apoptosis, autophagy induced by B5 is not ROS-mediated but a role for the AKT and AMPK signaling pathways is implied. In SiHa cells but not CaSki cells, B5-induced apoptosis was promoted by autophagy. These data suggest that the anticarcinogenic effects of B5 is mediated by complex interplay between cellular mechanisms governing redox homeostasis, apoptosis and autophagy.
format Online
Article
Text
id pubmed-4741579
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Impact Journals LLC
record_format MEDLINE/PubMed
spelling pubmed-47415792016-03-03 B5, a thioredoxin reductase inhibitor, induces apoptosis in human cervical cancer cells by suppressing the thioredoxin system, disrupting mitochondrion-dependent pathways and triggering autophagy Shao, Fang-Yuan Du, Zhi-Yun Ma, Dong-Lei Chen, Wen-Bo Fu, Wu-Yu Ruan, Bi-Bo Rui, Wen Zhang, Jia-Xuan Wang, Sheng Wong, Nai Sum Xiao, Hao Li, Man-Mei Liu, Xiao Liu, Qiu-Ying Zhou, Xiao-dong Yan, Hai-Zhao Wang, Yi-Fei Chen, Chang-Yan Liu, Zhong Chen, Hong-Yuan Oncotarget Research Paper The synthetic curcumin analog B5 is a potent inhibitor of thioredoxin reductase (TrxR) that has potential anticancer effects. The molecular mechanism underlying B5 as an anticancer agent is not yet fully understood. In this study, we report that B5 induces apoptosis in two human cervical cancer cell lines, CaSki and SiHa, as evidenced by the downregulation of XIAP, activation of caspases and cleavage of PARP. The involvement of the mitochondrial pathway in B5-induced apoptosis was suggested by the dissipation of mitochondrial membrane potential and increased expression of pro-apoptotic Bcl-2 family proteins. In B5-treated cells, TrxR activity was markedly inhibited with concomitant accumulation of oxidized thioredoxin, increased formation of reactive oxygen species (ROS), and activation of ASK1 and its downstream regulatory target p38/JNK. B5-induced apoptosis was significantly inhibited in the presence of N-acetyl-l-cysteine. Microscopic examination of B5-treated cells revealed increased presence of cytoplasmic vacuoles. The ability of B5 to activate autophagy in cells was subsequently confirmed by cell staining with acridine orange, accumulation of LC3-II, and measurement of autophagic flux. Unlike B5-induced apoptosis, autophagy induced by B5 is not ROS-mediated but a role for the AKT and AMPK signaling pathways is implied. In SiHa cells but not CaSki cells, B5-induced apoptosis was promoted by autophagy. These data suggest that the anticarcinogenic effects of B5 is mediated by complex interplay between cellular mechanisms governing redox homeostasis, apoptosis and autophagy. Impact Journals LLC 2015-09-04 /pmc/articles/PMC4741579/ /pubmed/26439985 Text en Copyright: © 2015 Shao et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Shao, Fang-Yuan
Du, Zhi-Yun
Ma, Dong-Lei
Chen, Wen-Bo
Fu, Wu-Yu
Ruan, Bi-Bo
Rui, Wen
Zhang, Jia-Xuan
Wang, Sheng
Wong, Nai Sum
Xiao, Hao
Li, Man-Mei
Liu, Xiao
Liu, Qiu-Ying
Zhou, Xiao-dong
Yan, Hai-Zhao
Wang, Yi-Fei
Chen, Chang-Yan
Liu, Zhong
Chen, Hong-Yuan
B5, a thioredoxin reductase inhibitor, induces apoptosis in human cervical cancer cells by suppressing the thioredoxin system, disrupting mitochondrion-dependent pathways and triggering autophagy
title B5, a thioredoxin reductase inhibitor, induces apoptosis in human cervical cancer cells by suppressing the thioredoxin system, disrupting mitochondrion-dependent pathways and triggering autophagy
title_full B5, a thioredoxin reductase inhibitor, induces apoptosis in human cervical cancer cells by suppressing the thioredoxin system, disrupting mitochondrion-dependent pathways and triggering autophagy
title_fullStr B5, a thioredoxin reductase inhibitor, induces apoptosis in human cervical cancer cells by suppressing the thioredoxin system, disrupting mitochondrion-dependent pathways and triggering autophagy
title_full_unstemmed B5, a thioredoxin reductase inhibitor, induces apoptosis in human cervical cancer cells by suppressing the thioredoxin system, disrupting mitochondrion-dependent pathways and triggering autophagy
title_short B5, a thioredoxin reductase inhibitor, induces apoptosis in human cervical cancer cells by suppressing the thioredoxin system, disrupting mitochondrion-dependent pathways and triggering autophagy
title_sort b5, a thioredoxin reductase inhibitor, induces apoptosis in human cervical cancer cells by suppressing the thioredoxin system, disrupting mitochondrion-dependent pathways and triggering autophagy
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4741579/
https://www.ncbi.nlm.nih.gov/pubmed/26439985
work_keys_str_mv AT shaofangyuan b5athioredoxinreductaseinhibitorinducesapoptosisinhumancervicalcancercellsbysuppressingthethioredoxinsystemdisruptingmitochondriondependentpathwaysandtriggeringautophagy
AT duzhiyun b5athioredoxinreductaseinhibitorinducesapoptosisinhumancervicalcancercellsbysuppressingthethioredoxinsystemdisruptingmitochondriondependentpathwaysandtriggeringautophagy
AT madonglei b5athioredoxinreductaseinhibitorinducesapoptosisinhumancervicalcancercellsbysuppressingthethioredoxinsystemdisruptingmitochondriondependentpathwaysandtriggeringautophagy
AT chenwenbo b5athioredoxinreductaseinhibitorinducesapoptosisinhumancervicalcancercellsbysuppressingthethioredoxinsystemdisruptingmitochondriondependentpathwaysandtriggeringautophagy
AT fuwuyu b5athioredoxinreductaseinhibitorinducesapoptosisinhumancervicalcancercellsbysuppressingthethioredoxinsystemdisruptingmitochondriondependentpathwaysandtriggeringautophagy
AT ruanbibo b5athioredoxinreductaseinhibitorinducesapoptosisinhumancervicalcancercellsbysuppressingthethioredoxinsystemdisruptingmitochondriondependentpathwaysandtriggeringautophagy
AT ruiwen b5athioredoxinreductaseinhibitorinducesapoptosisinhumancervicalcancercellsbysuppressingthethioredoxinsystemdisruptingmitochondriondependentpathwaysandtriggeringautophagy
AT zhangjiaxuan b5athioredoxinreductaseinhibitorinducesapoptosisinhumancervicalcancercellsbysuppressingthethioredoxinsystemdisruptingmitochondriondependentpathwaysandtriggeringautophagy
AT wangsheng b5athioredoxinreductaseinhibitorinducesapoptosisinhumancervicalcancercellsbysuppressingthethioredoxinsystemdisruptingmitochondriondependentpathwaysandtriggeringautophagy
AT wongnaisum b5athioredoxinreductaseinhibitorinducesapoptosisinhumancervicalcancercellsbysuppressingthethioredoxinsystemdisruptingmitochondriondependentpathwaysandtriggeringautophagy
AT xiaohao b5athioredoxinreductaseinhibitorinducesapoptosisinhumancervicalcancercellsbysuppressingthethioredoxinsystemdisruptingmitochondriondependentpathwaysandtriggeringautophagy
AT limanmei b5athioredoxinreductaseinhibitorinducesapoptosisinhumancervicalcancercellsbysuppressingthethioredoxinsystemdisruptingmitochondriondependentpathwaysandtriggeringautophagy
AT liuxiao b5athioredoxinreductaseinhibitorinducesapoptosisinhumancervicalcancercellsbysuppressingthethioredoxinsystemdisruptingmitochondriondependentpathwaysandtriggeringautophagy
AT liuqiuying b5athioredoxinreductaseinhibitorinducesapoptosisinhumancervicalcancercellsbysuppressingthethioredoxinsystemdisruptingmitochondriondependentpathwaysandtriggeringautophagy
AT zhouxiaodong b5athioredoxinreductaseinhibitorinducesapoptosisinhumancervicalcancercellsbysuppressingthethioredoxinsystemdisruptingmitochondriondependentpathwaysandtriggeringautophagy
AT yanhaizhao b5athioredoxinreductaseinhibitorinducesapoptosisinhumancervicalcancercellsbysuppressingthethioredoxinsystemdisruptingmitochondriondependentpathwaysandtriggeringautophagy
AT wangyifei b5athioredoxinreductaseinhibitorinducesapoptosisinhumancervicalcancercellsbysuppressingthethioredoxinsystemdisruptingmitochondriondependentpathwaysandtriggeringautophagy
AT chenchangyan b5athioredoxinreductaseinhibitorinducesapoptosisinhumancervicalcancercellsbysuppressingthethioredoxinsystemdisruptingmitochondriondependentpathwaysandtriggeringautophagy
AT liuzhong b5athioredoxinreductaseinhibitorinducesapoptosisinhumancervicalcancercellsbysuppressingthethioredoxinsystemdisruptingmitochondriondependentpathwaysandtriggeringautophagy
AT chenhongyuan b5athioredoxinreductaseinhibitorinducesapoptosisinhumancervicalcancercellsbysuppressingthethioredoxinsystemdisruptingmitochondriondependentpathwaysandtriggeringautophagy