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Latorre, Isabel Chesney, Michael A Garrigues, Jacob M Stempor, Przemyslaw Appert, Alex Francesconi, Mirko Strome, Susan Ahringer, Julie
The DREAM (DP, Retinoblastoma [Rb]-like, E2F, and MuvB) complex controls cellular quiescence by repressing cell cycle genes, but its mechanism of action is poorly understood. Here we show that Caenorhabditis elegans DREAM targets have an unusual pattern of high gene body HTZ-1/H2A.Z. In mutants of lin-35, the sole p130/Rb-like gene in C. elegans, D...
Latorre, Isabel Chesney, Michael A Garrigues, Jacob M Stempor, Przemyslaw Appert, Alex Francesconi, Mirko Strome, Susan Ahringer, Julie
The DREAM (DP, Retinoblastoma [Rb]-like, E2F, and MuvB) complex controls cellular quiescence by repressing cell cycle genes, but its mechanism of action is poorly understood. Here we show that Caenorhabditis elegans DREAM targets have an unusual pattern of high gene body HTZ-1/H2A.Z. In mutants of lin-35, the sole p130/Rb-like gene in C. elegans, D...
Latorre, Isabel Chesney, Michael A Garrigues, Jacob M Stempor, Przemyslaw Appert, Alex Francesconi, Mirko Strome, Susan Ahringer, Julie
Published in
Genes & development
The DREAM (DP, Retinoblastoma [Rb]-like, E2F, and MuvB) complex controls cellular quiescence by repressing cell cycle genes, but its mechanism of action is poorly understood. Here we show that Caenorhabditis elegans DREAM targets have an unusual pattern of high gene body HTZ-1/H2A.Z. In mutants of lin-35, the sole p130/Rb-like gene in C. elegans, D...