Noncanonical Functions of the Polycomb Group Protein EZH2 in Breast Cancer - ScienceDirect

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Last updated 06 junho 2024
Noncanonical Functions of the Polycomb Group Protein EZH2 in Breast Cancer  - ScienceDirect
Enhancer of Zeste Homologue 2 (EZH2) is the catalytic subunit of the polycomb repressive complex 2 (PRC2) that is critical for determining cell identi…
Noncanonical Functions of the Polycomb Group Protein EZH2 in Breast Cancer  - ScienceDirect
Epigenetic factors in cancer development: Polycomb group proteins
Noncanonical Functions of the Polycomb Group Protein EZH2 in Breast Cancer  - ScienceDirect
Epigenetic regulation of prostate cancer - ScienceDirect
Noncanonical Functions of the Polycomb Group Protein EZH2 in Breast Cancer  - ScienceDirect
Identification of a cytisine-based EED-EZH2 protein-protein interaction inhibitor preventing metastasis in triple-negative breast cancer cells – ScienceOpen
Noncanonical Functions of the Polycomb Group Protein EZH2 in Breast Cancer  - ScienceDirect
PDF) A Study on the Histone Methyltransferase Enhancer of Zeste Homolog 2 Expression in Breast Carcinoma
Noncanonical Functions of the Polycomb Group Protein EZH2 in Breast Cancer  - ScienceDirect
An EZH2-NF-κB regulatory axis drives expression of pro-oncogenic gene signatures in triple negative breast cancer - ScienceDirect
Noncanonical Functions of the Polycomb Group Protein EZH2 in Breast Cancer  - ScienceDirect
EZH2 expression is associated with inferior overall survival in mantle cell lymphoma - Modern Pathology
Noncanonical Functions of the Polycomb Group Protein EZH2 in Breast Cancer  - ScienceDirect
Combined inhibition of EZH2 and CD73 molecules by folic acid-conjugated SPION-TMC nanocarriers loaded with siRNA molecules prevents TNBC progression and restores anti-tumor responses - ScienceDirect
Noncanonical Functions of the Polycomb Group Protein EZH2 in Breast Cancer  - ScienceDirect
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Noncanonical Functions of the Polycomb Group Protein EZH2 in Breast Cancer  - ScienceDirect
Suppression of canonical TGF-β signaling enables GATA4 to interact with H3K27me3 demethylase JMJD3 to promote cardiomyogenesis - Journal of Molecular and Cellular Cardiology

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