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Asangani, Irfan A.; Ateeq, Bushra; Cao, Qi; Dodson, Lois; Pandhi, Mithil; Kunju, Lakshmi P.; Mehra, Rohit; Lonigro, Robert J.; Siddiqui, Javed; Palanisamy, Nallasivam; Wu, Yi-Mi; Cao, Xuhong; Kim, Jung H.; Zhao, Meng; Qin, Zhaohui S.; Iyer, Mathew K.; Maher, Christopher A.; Kumar-Sinha, Chandan; Varambally, Sooryanarayana; Chinnaiyan, Arul M.
Molecular cell, 01/2013, Volume: 49, Issue: 1Journal Article
Histone methyltransferases (HMTases), as chromatin modifiers, regulate the transcriptomic landscape in normal development as well in diseases such as cancer. Here, we molecularly order two HMTases, EZH2 and MMSET, that have established genetic links to oncogenesis. EZH2, which mediates histone H3K27 trimethylation and is associated with gene silencing, was shown to be coordinately expressed and function upstream of MMSET, which mediates H3K36 dimethylation and is associated with active transcription. We found that the EZH2-MMSET HMTase axis is coordinated by a microRNA network and that the oncogenic functions of EZH2 require MMSET activity. Together, these results suggest that the EZH2-MMSET HMTase axis coordinately functions as a master regulator of transcriptional repression, activation, and oncogenesis and may represent an attractive therapeutic target in cancer. ► Coordinated regulation of EZH2 and MMSET in cancer progression ► EZH2 regulates MMSET and its H3K36me2 mark through microRNAs ► MMSET is a downstream mediator of EZH2 oncogenic function ► MMSET overexpression promotes diverse oncogenic phenotypes in vitro and in vivo
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