4.4 Article

Integrative multiomics analysis identifies a metastasis-related gene signature and the potential oncogenic role of EZR in breast cancer

Journal

ONCOLOGY RESEARCH
Volume 30, Issue 1, Pages 35-51

Publisher

TECH SCIENCE PRESS
DOI: 10.32604/or.2022.026616

Keywords

Metastasis; Gene signature; EZR; Breast cancer

Categories

Funding

  1. Chinese National Science Foundation for Young Scientists of China [82003140]

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This study identified a nine-gene signature as an efficient prognostic indicator for breast cancer patients. Among these genes, EZR, as an oncogene, was found to be highly expressed in breast cancer cells and tissue, and involved in regulating breast cancer metastasis.
Distant metastasis is a major cause of increased mortality in breast cancer patients, but the mechanisms underlying breast cancer metastasis remain poorly understood. In this study, we aimed to identify a metastasis-related gene (MRG) signature for predicting progression in breast cancer. By screening using three regression analysis methods, a 9-gene signature (NOTCH1, PTP4A3, MMP13, MACC1, EZR, NEDD9, PIK3CA, F2RL1 and CCR7) was constructed based on an MRG set in the BRCA cohort from TCGA. This signature exhibited strong robustness, and its generalizability was verified in the Metabric and GEO cohorts. Of the nine MRGs, EZR is an oncogenic gene with a well-documented role in cell adhesion and cell migration, but it has rarely been investigated in breast cancer. Based on a search of different databases, EZR was found to be significantly more highly expressed in both breast cancer cells and breast cancer tissue. EZR knockdown significantly inhibited cell proliferation, invasion, chemoresistance and EMT in breast cancer. Mechanistically, RhoA activation assays confirmed that EZR knockdown inhibited the activity of RhoA, Rac1 and Cdc42. In summary, we identified a nine-MRG signature that can be used as an efficient prognostic indicator for breast cancer patients, and owing to its involvement in regulating breast cancer metastasis, EZR might serve as a therapeutic target.

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