Literature DB >> 24658082

Contribution of p53 to metastasis.

Emily Powell1, David Piwnica-Worms, Helen Piwnica-Worms.   

Abstract

UNLABELLED: The tumor suppressor p53 is lost or mutated in about half of all human cancers, and in those tumors in which it is wild-type, mechanisms exist to prevent its activation. p53 loss not only prevents incipient tumor cells from undergoing oncogene-induced senescence and apoptosis, but also perturbs cell-cycle checkpoints. This enables p53-deficient tumor cells with DNA damage to continue cycling, creating a permissive environment for the acquisition of additional mutations. Theoretically, this could contribute to the evolution of a cancer genome that is conducive to metastasis. Importantly, p53 loss also results in the disruption of pathways that inhibit metastasis, and transcriptionally defective TP53 mutants are known to gain additional functions that promote metastasis. Here, we review the evidence supporting a role for p53 loss or mutation in tumor metastasis, with an emphasis on breast cancer. SIGNIFICANCE: The metastatic potential of tumor cells can be positively infl uenced by loss of p53 or expression of p53 gain-of-function mutants. Understanding the mechanisms by which p53 loss and mutation promote tumor metastasis is crucial to understanding the biology of tumor progression and how to appropriately apply targeted therapies.

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Year:  2014        PMID: 24658082      PMCID: PMC4063123          DOI: 10.1158/2159-8290.CD-13-0136

Source DB:  PubMed          Journal:  Cancer Discov        ISSN: 2159-8274            Impact factor:   39.397


  80 in total

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Review 4.  The epithelial-mesenchymal transition under control: global programs to regulate epithelial plasticity.

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Journal:  Semin Cancer Biol       Date:  2012-05-18       Impact factor: 15.707

5.  miR-34 and SNAIL form a double-negative feedback loop to regulate epithelial-mesenchymal transitions.

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Review 6.  Cancer stem cells and epithelial-mesenchymal transition: concepts and molecular links.

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Review 8.  Recent advances in the therapeutic perspectives of Nutlin-3.

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9.  p53 regulates epithelial-mesenchymal transition and stem cell properties through modulating miRNAs.

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10.  Comprehensive molecular portraits of human breast tumours.

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  138 in total

1.  A Comparative Analysis of Clinical Characteristics and Histomorphologic and Immunohistochemical Spectrum of Gallbladder Carcinoma in Young Adults (< 45 Years) and Elderly Adults (> 60 Years).

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Journal:  Indian J Surg Oncol       Date:  2020-02-06

2.  Correcting errors in the BRCA1 warning system.

Authors:  Yanping Liang; William J Dearnaley; Nick A Alden; Maria J Solares; Brian L Gilmore; Kevin J Pridham; A Cameron Varano; Zhi Sheng; Elizabeth Alli; Deborah F Kelly
Journal:  DNA Repair (Amst)       Date:  2018-11-22

3.  Control of p53-dependent transcription and enhancer activity by the p53 family member p63.

Authors:  Gizem Karsli Uzunbas; Faraz Ahmed; Morgan A Sammons
Journal:  J Biol Chem       Date:  2019-05-21       Impact factor: 5.157

4.  Mutant P53 induces MELK expression by release of wild-type P53-dependent suppression of FOXM1.

Authors:  Lakshmi Reddy Bollu; Jonathan Shepherd; Dekuang Zhao; Yanxia Ma; William Tahaney; Corey Speers; Abhijit Mazumdar; Gordon B Mills; Powel H Brown
Journal:  NPJ Breast Cancer       Date:  2020-01-03

5.  Identification of novel biomarkers associated with poor patient outcomes in invasive breast carcinoma.

Authors:  Renata A Canevari; Fabio A Marchi; Maria A C Domingues; Victor Piana de Andrade; José R F Caldeira; Sergio Verjovski-Almeida; Silvia R Rogatto; Eduardo M Reis
Journal:  Tumour Biol       Date:  2016-08-02

Review 6.  Cancer metastasis - tricks of the trade.

Authors:  Rabia Zeeshan; Zeeshan Mutahir
Journal:  Bosn J Basic Med Sci       Date:  2017-08-20       Impact factor: 3.363

7.  TP53 mutational landscape of metastatic head and neck cancer reveals patterns of mutation selection.

Authors:  Apostolos Klinakis; Theodoros Rampias
Journal:  EBioMedicine       Date:  2020-07-30       Impact factor: 8.143

8.  Microchip-Based Structure Determination of Disease-Relevant p53.

Authors:  Maria J Solares; G M Jonaid; William Y Luqiu; Yanping Liang; Madison C Evans; William J Dearnaley; Zhi Sheng; Deborah F Kelly
Journal:  Anal Chem       Date:  2020-10-30       Impact factor: 6.986

9.  Combined p53- and PTEN-deficiency activates expression of mesenchyme homeobox 1 (MEOX1) required for growth of triple-negative breast cancer.

Authors:  Mari Gasparyan; Miao-Chia Lo; Hui Jiang; Chang-Ching Lin; Duxin Sun
Journal:  J Biol Chem       Date:  2020-05-28       Impact factor: 5.157

10.  Novel evidence for retinoic acid-induced G (Rig-G) as a tumor suppressor by activating p53 signaling pathway in lung cancer.

Authors:  Junjun Sun; Xuan Wang; Wenfang Liu; Ping Ji; Anquan Shang; Junlu Wu; Hao Zhou; Wenqiang Quan; Yiwen Yao; Yibao Yang; ChenZheng Gu; Zujun Sun; Ajay Goel; Wenhao Weng; Dong Li
Journal:  FASEB J       Date:  2020-08-02       Impact factor: 5.191

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