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

被引:0
|
作者
Yan Wang
Ziliang Wang
Zihao Qi
Sheng Yin
Na Zhang
Yang Liu
Mingming Liu
Jiao Meng
Rongyu Zang
Zhen Zhang
Gong Yang
机构
[1] Fudan University Shanghai Cancer Center,Cancer Institute
[2] Fudan University Shanghai Cancer Center,Department of Gynecological Oncology
[3] Fudan University Shanghai Cancer Center,Department of Radiation Oncology
[4] Fudan University,Department of Oncology, Shanghai Medical College
[5] Fudan University,Center Laboratory, The Fifth People’s Hospital of Shanghai
来源
Molecular Cancer | / 13卷
关键词
Aurora A/B; BRCA1/2; Cell cycle; Cytokinesis; Tetraploidy; Tumorigenesis;
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学科分类号
摘要
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.
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