Cargando…

A selenosemicarbazone complex with copper efficiently down-regulates the 90-kDa heat shock protein HSP90AA1 and its client proteins in cancer cells

BACKGROUND: The 90-kDa heat shock protein HSP90AA1 is critical for the stability of several proteins that are important for tumor progression and thus, is a promising target for cancer therapy. Selenosemicarbazone metal complexes have been shown to possess anticancer activity through an unknown mole...

Descripción completa

Detalles Bibliográficos
Autores principales: Shen, Hongtao, Zhu, Haichuan, Song, Mowei, Tian, Yonglu, Huang, Yafei, Zheng, Hui, Cao, Ruiyuan, Lin, Jian, Bi, Zhenggang, Zhong, Wu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4168210/
https://www.ncbi.nlm.nih.gov/pubmed/25167922
http://dx.doi.org/10.1186/1471-2407-14-629
_version_ 1782335515056406528
author Shen, Hongtao
Zhu, Haichuan
Song, Mowei
Tian, Yonglu
Huang, Yafei
Zheng, Hui
Cao, Ruiyuan
Lin, Jian
Bi, Zhenggang
Zhong, Wu
author_facet Shen, Hongtao
Zhu, Haichuan
Song, Mowei
Tian, Yonglu
Huang, Yafei
Zheng, Hui
Cao, Ruiyuan
Lin, Jian
Bi, Zhenggang
Zhong, Wu
author_sort Shen, Hongtao
collection PubMed
description BACKGROUND: The 90-kDa heat shock protein HSP90AA1 is critical for the stability of several proteins that are important for tumor progression and thus, is a promising target for cancer therapy. Selenosemicarbazone metal complexes have been shown to possess anticancer activity through an unknown molecular mechanism. METHODS: The MTT assay, fluorescence-activated cell sorting, and fluorescent microscopy were used to analyze the mechanism of the anti-cancer activity of the selenosemicarbazone metal complexes. Additionally, RNA-seq was applied to identify transcriptional gene changes, and in turn, the signaling pathways involved in the process of 2-24a/Cu-induced cell death. Last, the expression of HSP90AA1, HSPA1A, PIM1, and AKT proteins in 2-24a/Cu-treated cells were investigated by western blot analysis. RESULTS: A novel selenosemicarbazone copper complex (2-24a/Cu) efficiently induced G2/M arrest and was cytotoxic in cancer cells. 2-24a/Cu significantly induced oxidative stress in cancer cells. Interestingly, although RNA-seq revealed that the transcription of HSP90AA1 was increased in 2-24a/Cu-treated cells, western blotting showed that the expression of HSP90AA1 protein was significantly decreased in these cells. Furthermore, down-regulation of HSP90AA1 led to the degradation of its client proteins (PIM1 and AKT1), which are also cancer therapy targets. CONCLUSION: Our results showed that 2-24a/Cu efficiently generates oxidative stress and down-regulates HSP90AA1 and its client proteins (PIM1, AKT1) in U2os and HeLa cells. These results demonstrate the potential application of this novel copper complex in cancer therapy.
format Online
Article
Text
id pubmed-4168210
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher BioMed Central
record_format MEDLINE/PubMed
spelling pubmed-41682102014-09-20 A selenosemicarbazone complex with copper efficiently down-regulates the 90-kDa heat shock protein HSP90AA1 and its client proteins in cancer cells Shen, Hongtao Zhu, Haichuan Song, Mowei Tian, Yonglu Huang, Yafei Zheng, Hui Cao, Ruiyuan Lin, Jian Bi, Zhenggang Zhong, Wu BMC Cancer Research Article BACKGROUND: The 90-kDa heat shock protein HSP90AA1 is critical for the stability of several proteins that are important for tumor progression and thus, is a promising target for cancer therapy. Selenosemicarbazone metal complexes have been shown to possess anticancer activity through an unknown molecular mechanism. METHODS: The MTT assay, fluorescence-activated cell sorting, and fluorescent microscopy were used to analyze the mechanism of the anti-cancer activity of the selenosemicarbazone metal complexes. Additionally, RNA-seq was applied to identify transcriptional gene changes, and in turn, the signaling pathways involved in the process of 2-24a/Cu-induced cell death. Last, the expression of HSP90AA1, HSPA1A, PIM1, and AKT proteins in 2-24a/Cu-treated cells were investigated by western blot analysis. RESULTS: A novel selenosemicarbazone copper complex (2-24a/Cu) efficiently induced G2/M arrest and was cytotoxic in cancer cells. 2-24a/Cu significantly induced oxidative stress in cancer cells. Interestingly, although RNA-seq revealed that the transcription of HSP90AA1 was increased in 2-24a/Cu-treated cells, western blotting showed that the expression of HSP90AA1 protein was significantly decreased in these cells. Furthermore, down-regulation of HSP90AA1 led to the degradation of its client proteins (PIM1 and AKT1), which are also cancer therapy targets. CONCLUSION: Our results showed that 2-24a/Cu efficiently generates oxidative stress and down-regulates HSP90AA1 and its client proteins (PIM1, AKT1) in U2os and HeLa cells. These results demonstrate the potential application of this novel copper complex in cancer therapy. BioMed Central 2014-08-29 /pmc/articles/PMC4168210/ /pubmed/25167922 http://dx.doi.org/10.1186/1471-2407-14-629 Text en © Shen et al.; licensee BioMed Central Ltd. 2014 This article is published under license to BioMed Central Ltd. This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly credited. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Research Article
Shen, Hongtao
Zhu, Haichuan
Song, Mowei
Tian, Yonglu
Huang, Yafei
Zheng, Hui
Cao, Ruiyuan
Lin, Jian
Bi, Zhenggang
Zhong, Wu
A selenosemicarbazone complex with copper efficiently down-regulates the 90-kDa heat shock protein HSP90AA1 and its client proteins in cancer cells
title A selenosemicarbazone complex with copper efficiently down-regulates the 90-kDa heat shock protein HSP90AA1 and its client proteins in cancer cells
title_full A selenosemicarbazone complex with copper efficiently down-regulates the 90-kDa heat shock protein HSP90AA1 and its client proteins in cancer cells
title_fullStr A selenosemicarbazone complex with copper efficiently down-regulates the 90-kDa heat shock protein HSP90AA1 and its client proteins in cancer cells
title_full_unstemmed A selenosemicarbazone complex with copper efficiently down-regulates the 90-kDa heat shock protein HSP90AA1 and its client proteins in cancer cells
title_short A selenosemicarbazone complex with copper efficiently down-regulates the 90-kDa heat shock protein HSP90AA1 and its client proteins in cancer cells
title_sort selenosemicarbazone complex with copper efficiently down-regulates the 90-kda heat shock protein hsp90aa1 and its client proteins in cancer cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4168210/
https://www.ncbi.nlm.nih.gov/pubmed/25167922
http://dx.doi.org/10.1186/1471-2407-14-629
work_keys_str_mv AT shenhongtao aselenosemicarbazonecomplexwithcopperefficientlydownregulatesthe90kdaheatshockproteinhsp90aa1anditsclientproteinsincancercells
AT zhuhaichuan aselenosemicarbazonecomplexwithcopperefficientlydownregulatesthe90kdaheatshockproteinhsp90aa1anditsclientproteinsincancercells
AT songmowei aselenosemicarbazonecomplexwithcopperefficientlydownregulatesthe90kdaheatshockproteinhsp90aa1anditsclientproteinsincancercells
AT tianyonglu aselenosemicarbazonecomplexwithcopperefficientlydownregulatesthe90kdaheatshockproteinhsp90aa1anditsclientproteinsincancercells
AT huangyafei aselenosemicarbazonecomplexwithcopperefficientlydownregulatesthe90kdaheatshockproteinhsp90aa1anditsclientproteinsincancercells
AT zhenghui aselenosemicarbazonecomplexwithcopperefficientlydownregulatesthe90kdaheatshockproteinhsp90aa1anditsclientproteinsincancercells
AT caoruiyuan aselenosemicarbazonecomplexwithcopperefficientlydownregulatesthe90kdaheatshockproteinhsp90aa1anditsclientproteinsincancercells
AT linjian aselenosemicarbazonecomplexwithcopperefficientlydownregulatesthe90kdaheatshockproteinhsp90aa1anditsclientproteinsincancercells
AT bizhenggang aselenosemicarbazonecomplexwithcopperefficientlydownregulatesthe90kdaheatshockproteinhsp90aa1anditsclientproteinsincancercells
AT zhongwu aselenosemicarbazonecomplexwithcopperefficientlydownregulatesthe90kdaheatshockproteinhsp90aa1anditsclientproteinsincancercells
AT shenhongtao selenosemicarbazonecomplexwithcopperefficientlydownregulatesthe90kdaheatshockproteinhsp90aa1anditsclientproteinsincancercells
AT zhuhaichuan selenosemicarbazonecomplexwithcopperefficientlydownregulatesthe90kdaheatshockproteinhsp90aa1anditsclientproteinsincancercells
AT songmowei selenosemicarbazonecomplexwithcopperefficientlydownregulatesthe90kdaheatshockproteinhsp90aa1anditsclientproteinsincancercells
AT tianyonglu selenosemicarbazonecomplexwithcopperefficientlydownregulatesthe90kdaheatshockproteinhsp90aa1anditsclientproteinsincancercells
AT huangyafei selenosemicarbazonecomplexwithcopperefficientlydownregulatesthe90kdaheatshockproteinhsp90aa1anditsclientproteinsincancercells
AT zhenghui selenosemicarbazonecomplexwithcopperefficientlydownregulatesthe90kdaheatshockproteinhsp90aa1anditsclientproteinsincancercells
AT caoruiyuan selenosemicarbazonecomplexwithcopperefficientlydownregulatesthe90kdaheatshockproteinhsp90aa1anditsclientproteinsincancercells
AT linjian selenosemicarbazonecomplexwithcopperefficientlydownregulatesthe90kdaheatshockproteinhsp90aa1anditsclientproteinsincancercells
AT bizhenggang selenosemicarbazonecomplexwithcopperefficientlydownregulatesthe90kdaheatshockproteinhsp90aa1anditsclientproteinsincancercells
AT zhongwu selenosemicarbazonecomplexwithcopperefficientlydownregulatesthe90kdaheatshockproteinhsp90aa1anditsclientproteinsincancercells