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KIBRA attains oncogenic activity by repressing RASSF1A
Anuj, Arivazhagan, Lakshmi, Surabhi, Rohan Prasad, Kanakarajan, Archana, Sundaram, Sandhya, Pitani, Ravi Shankar, Mudduwa, Lakmini, Kremerskothen, Joachim, Venkatraman, Ganesh,
Published in Nature Publishing Group
2017
Volume: 117
   
Issue: 4
Pages: 553 - 562
Abstract
Background: KIBRA - initially identified as a neuronal associated protein is now shown to be functionally associated with other tissue types as well. KIBRA interacts with dyenin light chain 1 and this interaction is essential for oestrogen receptor transactivation in breast cancer cells. KIBRA as a substrate of Cdk1, Aurora kinase and ERK plays an important role in regulating cell cycle, cell proliferation and migration. Despite these evidences, the exact role of KIBRA in cancer progression is not known.Methods: We studied the expression of KIBRA in breast tissues and breast cancer cell lines by western blotting, immunohistochemisry (IHC) and RT-PCR. Stable over expression and knockdown clones were generated to study the transforming properties of KIBRA by conventional assays. Xenograft studies were performed in nude mice to study the in vivo tumourigenic efficacy of KIBRA. qPCR array was performed to understand the molecular mechanism behind oncogenic activity of KIBRA.Results: Our results showed that KIBRA is upregulated in breast cancer cells and in malignant human breast tumours by both western blotting and IHC. Interestingly, we found that KIBRA expression level goes up with increase in breast cancer progression in well-established MCF10A model system. Further, results from stable overexpression clones of KIBRA in fibroblasts (Rat-1) and epithelial breast cancer cells (ZR75) and lentiviral short hairpin RNA-mediated knockdown (KD) clones of KIBRA in ZR75 showed increase in transforming properties with KIBRA overexpression and vice-versa. Results also showed that fibroblasts stably overexpressing KIBRA showed increased tumourigenic potential in nude mice. By adopting a quantitative PCR array-based approach, we identified RASSF1A, a tumour suppressor, as a transcriptional target of KIBRA.Conclusions: This is the first study to demonstrate the in vivo tumourigenic property of KIBRA in a nude mouse model and also unravel the underlying molecular mechanism of KIBRA-mediated transformation via repression of RASSF1A. © 2017 Cancer Research UK.
About the journal
JournalBritish Journal of Cancer
PublisherNature Publishing Group
ISSN00070920
Open AccessYes
Concepts (38)
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    Protein
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    PROTEIN KIBRA
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    RAS ASSOCIATION DOMAIN FAMILY PROTEIN 1A
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    Short hairpin rna
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    Unclassified drug
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    Animal cell
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    Animal experiment
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    Animal model
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    Animal tissue
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    Article
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    Breast cancer
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    BREAST CANCER CELL LINE
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    BREAST TISSUE
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    CARCINOGENESIS
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    Cell proliferation
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    Cell survival
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    Controlled study
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    Female
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    FIBROBLAST CELL LINE
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    Gene silencing
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    Human
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    Human cell
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    Human tissue
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    Immunohistochemistry
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    In vitro study
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    In vivo study
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    Mouse
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    Nonhuman
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    Polymerase chain reaction
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    Priority journal
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    Protein expression
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    Protein function
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    Quantitative analysis
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    Rat
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    Reverse transcription polymerase chain reaction
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    TUMOR XENOGRAFT
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    Upregulation
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    Western blotting