A transgenic mouse model demonstrating the oncogenic role of mutations in the polycomb-group gene EZH2 in lymphomagenesis

作者:Berg Tobias; Thoene Silvia; Yap Damian; Wee Tracee; Schoeler Nathalie; Rosten Patty; Lim Emilia; Bilenky Misha; Mungall Andrew J; Oellerich Thomas; Lee Sherry; Lai Courteney K; Umlandt Patricia; Salmi Anisa; Chang Harry; Yue Lisa; Lai David; Cheng S W Grace; Morin Ryan D; Hirst Martin; Serve Hubert; Marra Marco A; Morin Gregg B; Gascoyne Randy D; Aparicio Samuel A; Humphries R Keith*
来源:Blood, 2014, 123(25): 3914-3924.
DOI:10.1182/blood-2012-12-473439

摘要

The histone methyltransferase EZH2 is frequently mutated in germinal center-derived diffuse large B-cell lymphoma and follicular lymphoma. To further characterize these EZH2 mutations in lymphomagenesis, we generated a mouse line where EZH2(Y641F) is expressed from a lymphocyte-specific promoter. Spleen cells isolated from the transgenic mice displayed a global increase in trimethylated H3K27, but the mice did not show an increased tendency to develop lymphoma. As EZH2 mutations often coincide with other mutations in lymphoma, we combined the expression of EZH2(Y641F) by crossing these transgenic mice with Em-Myc transgenic mice. We observed a dramatic acceleration of lymphoma development in this combination model of Myc and EZH2(Y641F). The lymphomas show histologic features of high-grade disease with a shift toward a more mature B-cell phenotype, increased cycling and gene expression, and epigenetic changes involving important pathways in B-cell regulation and function. Furthermore, they initiate disease in secondary recipients. In summary, EZH2(Y641F) can collaborate with Myc to accelerate lymphomagenesis demonstrating a cooperative role of EZH2 mutations in oncogenesis. This murine lymphoma model provides a new tool to study global changes in the epigenome caused by this frequent mutation and a promising model system for testing novel treatments.

  • 出版日期2014-6-19