生物
上皮-间质转换
癌症研究
间充质干细胞
殖民地化
癌症
癌变
细胞
细胞生物学
微生物学
转移
遗传学
作者
Amador Gallardo,Aldara Molina,Helena G. Asenjo,Lourdes López-Onieva,Jordi Martorell‐Marugán,Mencía Espinosa-Martínez,Carmen Griñán‐Lisón,Juan Carlos Álvarez-Pérez,Francisca E. Cara,Saúl A. Navarro-Marchal,Pedro Carmona‐Sáez,Pedro P. Medina,Juan Antonio Marchal,Sergio Granados‐Principal,Antonio Sánchez–Pozo,David Landeira
出处
期刊:Oncogene
[Springer Nature]
日期:2022-06-09
卷期号:41 (28): 3611-3624
被引量:34
标识
DOI:10.1038/s41388-022-02375-x
摘要
Reversible transition between the epithelial and mesenchymal states are key aspects of carcinoma cell dissemination and the metastatic disease, and thus, characterizing the molecular basis of the epithelial to mesenchymal transition (EMT) is crucial to find druggable targets and more effective therapeutic approaches in cancer. Emerging studies suggest that epigenetic regulators might endorse cancer cells with the cell plasticity required to conduct dynamic changes in cell state during EMT. However, epigenetic mechanisms involved remain mostly unknown. Polycomb Repressive Complexes (PRCs) proteins are well-established epigenetic regulators of development and stem cell differentiation, but their role in different cancer systems is inconsistent and sometimes paradoxical. In this study, we have analysed the role of the PRC2 protein EZH2 in lung carcinoma cells. We found that besides its described role in CDKN2A-dependent cell proliferation, EZH2 upholds the epithelial state of cancer cells by repressing the transcription of hundreds of mesenchymal genes. Chemical inhibition or genetic removal of EZH2 promotes the residence of cancer cells in the mesenchymal state during reversible epithelial–mesenchymal transition. In fitting, analysis of human patient samples and tumour xenograft models indicate that EZH2 is required to efficiently repress mesenchymal genes and facilitate tumour colonization in vivo. Overall, this study discloses a novel role of PRC2 as a master regulator of EMT in carcinoma cells. This finding has important implications for the design of therapies based on EZH2 inhibitors in human cancer patients.
科研通智能强力驱动
Strongly Powered by AbleSci AI