Cargando…

The negative interplay between Aurora A/B and BRCA1/2 controls cancer cell growth and tumorigenesis via distinct regulation of cell cycle progression, cytokinesis, and tetraploidy

It is well known that the activation of Aurora A/B (Aur A/B) or inactivation of BRCA1/2 induces tumor formation. Others and we have reported that the mutual suppression between Aur A/B and BRCA1/2 may manipulate cancer cell growth and tumorigenesis, however, the interactive regulation and mechanism...

Descripción completa

Detalles Bibliográficos
Autores principales: Wang, Yan, Wang, Ziliang, Qi, Zihao, Yin, Sheng, Zhang, Na, Liu, Yang, Liu, Mingming, Meng, Jiao, Zang, Rongyu, Zhang, Zhen, Yang, Gong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4028103/
https://www.ncbi.nlm.nih.gov/pubmed/24775809
http://dx.doi.org/10.1186/1476-4598-13-94
_version_ 1782317034301816832
author Wang, Yan
Wang, Ziliang
Qi, Zihao
Yin, Sheng
Zhang, Na
Liu, Yang
Liu, Mingming
Meng, Jiao
Zang, Rongyu
Zhang, Zhen
Yang, Gong
author_facet Wang, Yan
Wang, Ziliang
Qi, Zihao
Yin, Sheng
Zhang, Na
Liu, Yang
Liu, Mingming
Meng, Jiao
Zang, Rongyu
Zhang, Zhen
Yang, Gong
author_sort Wang, Yan
collection PubMed
description It is well known that the activation of Aurora A/B (Aur A/B) or inactivation of BRCA1/2 induces tumor formation. Others and we have reported that the mutual suppression between Aur A/B and BRCA1/2 may manipulate cancer cell growth and tumorigenesis, however, the interactive regulation and mechanism between these molecules are still elusive. In this study, by consecutive silencing of Aur A/B or/and BRCA1/2 with specific shRNAs, we showed that, in BRCA2-deficient pancreatic cancer cell line Capan-1 and in ovarian cancer cell line OVCA433, Aur A/B and BRCA1/2 inversely regulated the expression of each other likely through proteasome-mediated proteolysis but not through gene transcription. Aur A/B and BRCA1/2 conversely regulated cell cycle progression mainly through control of p53 and cyclin A. Moreover, the disruption of Aur A/B blocked abnormal cytokinesis and decreased cell multinuclearity and chromosome tetraploidy, whereas the deprivation of BRCA1/2 promoted the abnormal cytokinesis and enhanced the cell multinuclearity and tetraploidy. Furthermore, we showed by animal assays that the depletion of Aur A/B inhibited tumor growth of both cell lines, while the knockdown of BRCA1/2 promoted the tumor growth. However, the concurrent silencing of Aur A/B and BRCA1/2 diminished the effects of these molecules on the regulation of cell cycle, cytokinesis, and tetraploidy, leading to the burdened tumor sizes similar to those induced by scrambled shRNA-treated control cells. In summary, our study revealed that the negative interplay between Aur A/B and BRCA1/2 inversely controls the cell proliferation, cell cycle progression, cell multinuclearity, and tetraploidization to modulate tumorigenesis.
format Online
Article
Text
id pubmed-4028103
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher BioMed Central
record_format MEDLINE/PubMed
spelling pubmed-40281032014-05-21 The negative interplay between Aurora A/B and BRCA1/2 controls cancer cell growth and tumorigenesis via distinct regulation of cell cycle progression, cytokinesis, and tetraploidy Wang, Yan Wang, Ziliang Qi, Zihao Yin, Sheng Zhang, Na Liu, Yang Liu, Mingming Meng, Jiao Zang, Rongyu Zhang, Zhen Yang, Gong Mol Cancer Research It is well known that the activation of Aurora A/B (Aur A/B) or inactivation of BRCA1/2 induces tumor formation. Others and we have reported that the mutual suppression between Aur A/B and BRCA1/2 may manipulate cancer cell growth and tumorigenesis, however, the interactive regulation and mechanism between these molecules are still elusive. In this study, by consecutive silencing of Aur A/B or/and BRCA1/2 with specific shRNAs, we showed that, in BRCA2-deficient pancreatic cancer cell line Capan-1 and in ovarian cancer cell line OVCA433, Aur A/B and BRCA1/2 inversely regulated the expression of each other likely through proteasome-mediated proteolysis but not through gene transcription. Aur A/B and BRCA1/2 conversely regulated cell cycle progression mainly through control of p53 and cyclin A. Moreover, the disruption of Aur A/B blocked abnormal cytokinesis and decreased cell multinuclearity and chromosome tetraploidy, whereas the deprivation of BRCA1/2 promoted the abnormal cytokinesis and enhanced the cell multinuclearity and tetraploidy. Furthermore, we showed by animal assays that the depletion of Aur A/B inhibited tumor growth of both cell lines, while the knockdown of BRCA1/2 promoted the tumor growth. However, the concurrent silencing of Aur A/B and BRCA1/2 diminished the effects of these molecules on the regulation of cell cycle, cytokinesis, and tetraploidy, leading to the burdened tumor sizes similar to those induced by scrambled shRNA-treated control cells. In summary, our study revealed that the negative interplay between Aur A/B and BRCA1/2 inversely controls the cell proliferation, cell cycle progression, cell multinuclearity, and tetraploidization to modulate tumorigenesis. BioMed Central 2014-04-28 /pmc/articles/PMC4028103/ /pubmed/24775809 http://dx.doi.org/10.1186/1476-4598-13-94 Text en Copyright © 2014 Wang et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), 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
Wang, Yan
Wang, Ziliang
Qi, Zihao
Yin, Sheng
Zhang, Na
Liu, Yang
Liu, Mingming
Meng, Jiao
Zang, Rongyu
Zhang, Zhen
Yang, Gong
The negative interplay between Aurora A/B and BRCA1/2 controls cancer cell growth and tumorigenesis via distinct regulation of cell cycle progression, cytokinesis, and tetraploidy
title The negative interplay between Aurora A/B and BRCA1/2 controls cancer cell growth and tumorigenesis via distinct regulation of cell cycle progression, cytokinesis, and tetraploidy
title_full The negative interplay between Aurora A/B and BRCA1/2 controls cancer cell growth and tumorigenesis via distinct regulation of cell cycle progression, cytokinesis, and tetraploidy
title_fullStr The negative interplay between Aurora A/B and BRCA1/2 controls cancer cell growth and tumorigenesis via distinct regulation of cell cycle progression, cytokinesis, and tetraploidy
title_full_unstemmed The negative interplay between Aurora A/B and BRCA1/2 controls cancer cell growth and tumorigenesis via distinct regulation of cell cycle progression, cytokinesis, and tetraploidy
title_short The negative interplay between Aurora A/B and BRCA1/2 controls cancer cell growth and tumorigenesis via distinct regulation of cell cycle progression, cytokinesis, and tetraploidy
title_sort negative interplay between aurora a/b and brca1/2 controls cancer cell growth and tumorigenesis via distinct regulation of cell cycle progression, cytokinesis, and tetraploidy
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4028103/
https://www.ncbi.nlm.nih.gov/pubmed/24775809
http://dx.doi.org/10.1186/1476-4598-13-94
work_keys_str_mv AT wangyan thenegativeinterplaybetweenauroraabandbrca12controlscancercellgrowthandtumorigenesisviadistinctregulationofcellcycleprogressioncytokinesisandtetraploidy
AT wangziliang thenegativeinterplaybetweenauroraabandbrca12controlscancercellgrowthandtumorigenesisviadistinctregulationofcellcycleprogressioncytokinesisandtetraploidy
AT qizihao thenegativeinterplaybetweenauroraabandbrca12controlscancercellgrowthandtumorigenesisviadistinctregulationofcellcycleprogressioncytokinesisandtetraploidy
AT yinsheng thenegativeinterplaybetweenauroraabandbrca12controlscancercellgrowthandtumorigenesisviadistinctregulationofcellcycleprogressioncytokinesisandtetraploidy
AT zhangna thenegativeinterplaybetweenauroraabandbrca12controlscancercellgrowthandtumorigenesisviadistinctregulationofcellcycleprogressioncytokinesisandtetraploidy
AT liuyang thenegativeinterplaybetweenauroraabandbrca12controlscancercellgrowthandtumorigenesisviadistinctregulationofcellcycleprogressioncytokinesisandtetraploidy
AT liumingming thenegativeinterplaybetweenauroraabandbrca12controlscancercellgrowthandtumorigenesisviadistinctregulationofcellcycleprogressioncytokinesisandtetraploidy
AT mengjiao thenegativeinterplaybetweenauroraabandbrca12controlscancercellgrowthandtumorigenesisviadistinctregulationofcellcycleprogressioncytokinesisandtetraploidy
AT zangrongyu thenegativeinterplaybetweenauroraabandbrca12controlscancercellgrowthandtumorigenesisviadistinctregulationofcellcycleprogressioncytokinesisandtetraploidy
AT zhangzhen thenegativeinterplaybetweenauroraabandbrca12controlscancercellgrowthandtumorigenesisviadistinctregulationofcellcycleprogressioncytokinesisandtetraploidy
AT yanggong thenegativeinterplaybetweenauroraabandbrca12controlscancercellgrowthandtumorigenesisviadistinctregulationofcellcycleprogressioncytokinesisandtetraploidy
AT wangyan negativeinterplaybetweenauroraabandbrca12controlscancercellgrowthandtumorigenesisviadistinctregulationofcellcycleprogressioncytokinesisandtetraploidy
AT wangziliang negativeinterplaybetweenauroraabandbrca12controlscancercellgrowthandtumorigenesisviadistinctregulationofcellcycleprogressioncytokinesisandtetraploidy
AT qizihao negativeinterplaybetweenauroraabandbrca12controlscancercellgrowthandtumorigenesisviadistinctregulationofcellcycleprogressioncytokinesisandtetraploidy
AT yinsheng negativeinterplaybetweenauroraabandbrca12controlscancercellgrowthandtumorigenesisviadistinctregulationofcellcycleprogressioncytokinesisandtetraploidy
AT zhangna negativeinterplaybetweenauroraabandbrca12controlscancercellgrowthandtumorigenesisviadistinctregulationofcellcycleprogressioncytokinesisandtetraploidy
AT liuyang negativeinterplaybetweenauroraabandbrca12controlscancercellgrowthandtumorigenesisviadistinctregulationofcellcycleprogressioncytokinesisandtetraploidy
AT liumingming negativeinterplaybetweenauroraabandbrca12controlscancercellgrowthandtumorigenesisviadistinctregulationofcellcycleprogressioncytokinesisandtetraploidy
AT mengjiao negativeinterplaybetweenauroraabandbrca12controlscancercellgrowthandtumorigenesisviadistinctregulationofcellcycleprogressioncytokinesisandtetraploidy
AT zangrongyu negativeinterplaybetweenauroraabandbrca12controlscancercellgrowthandtumorigenesisviadistinctregulationofcellcycleprogressioncytokinesisandtetraploidy
AT zhangzhen negativeinterplaybetweenauroraabandbrca12controlscancercellgrowthandtumorigenesisviadistinctregulationofcellcycleprogressioncytokinesisandtetraploidy
AT yanggong negativeinterplaybetweenauroraabandbrca12controlscancercellgrowthandtumorigenesisviadistinctregulationofcellcycleprogressioncytokinesisandtetraploidy