Klappacher Günter W, Lunyak Victoria V, Sykes David B, Sawka-Verhelle Dominique, Sage Julien, Brard Gyan, Ngo Sally D, Gangadharan Denise, Jacks Tyler, Kamps Mark P, Rose David W, Rosenfeld Michael G, Glass Christopher K
Department of Cellular and Molecular Medicine, Howard Hughes Medical Institute, University of California San Diego, 9500 Gilman Drive, La Jolla, CA 92093, USA.
Cell. 2002 Apr 19;109(2):169-80. doi: 10.1016/s0092-8674(02)00714-6.
Defining the molecular mechanisms that coordinately regulate proliferation and differentiation is a central issue in development. Here, we describe a mechanism in which induction of the Ets repressor METS/PE1 links terminal differentiation to cell cycle arrest. Using macrophages as a model, we provide evidence that METS/PE1 blocks Ras-dependent proliferation without inhibiting Ras-dependent expression of cell type-specific genes by selectively replacing Ets activators on the promoters of cell cycle control genes. Antiproliferative effects of METS require its interaction with DP103, a DEAD box-containing protein that assembles a novel corepressor complex. Functional interactions between the METS/DP103 complex and E2F/ pRB family proteins are also necessary for inhibition of cellular proliferation, suggesting a combinatorial code that directs permanent cell cycle exit during terminal differentiation.
确定协调调节细胞增殖和分化的分子机制是发育生物学中的核心问题。在此,我们描述了一种机制,即Ets家族阻遏蛋白METS/PE1的诱导将终末分化与细胞周期停滞联系起来。以巨噬细胞为模型,我们提供证据表明,METS/PE1通过选择性取代细胞周期控制基因启动子上的Ets激活因子,在不抑制Ras依赖性细胞类型特异性基因表达的情况下,阻断Ras依赖性增殖。METS的抗增殖作用需要其与DP103相互作用,DP103是一种含DEAD框的蛋白,可组装一个新的共抑制复合物。METS/DP103复合物与E2F/pRB家族蛋白之间的功能相互作用对于抑制细胞增殖也是必需的,这表明存在一种组合密码,可在终末分化过程中引导细胞永久性退出细胞周期。