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Role of mammalian Ecdysoneless in cell cycle regulation.


ABSTRACT: The Ecdysoneless (Ecd) protein is required for cell-autonomous roles in development and oogenesis in Drosophila, but the function of its evolutionarily conserved mammalian orthologs is not clear. To study the cellular function of Ecd in mammalian cells, we generated Ecd(lox/lox) mouse embryonic fibroblast cells from Ecd floxed mouse embryos. Cre-mediated deletion of Ecd in Ecd(lox/lox) mouse embryonic fibroblasts led to a proliferative block due to a delay in G(1)-S cell cycle progression; this defect was reversed by the introduction of human Ecd. Loss of Ecd led to marked down-regulation of E2F target gene expression. Furthermore, Ecd directly bound to Rb at the pocket domain and competed with E2F for binding to hypophosphorylated Rb. Our results demonstrate that mammalian Ecd plays a role in cell cycle progression via the Rb-E2F pathway.

SUBMITTER: Kim JH 

PROVIDER: S-EPMC2785328 | biostudies-literature | 2009 Sep

REPOSITORIES: biostudies-literature

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Role of mammalian Ecdysoneless in cell cycle regulation.

Kim Jun Hyun JH   Gurumurthy Channabasavaiah Basavaraju CB   Naramura Mayumi M   Zhang Ying Y   Dudley Andrew T AT   Doglio Lynn L   Band Hamid H   Band Vimla V  

The Journal of biological chemistry 20090729 39


The Ecdysoneless (Ecd) protein is required for cell-autonomous roles in development and oogenesis in Drosophila, but the function of its evolutionarily conserved mammalian orthologs is not clear. To study the cellular function of Ecd in mammalian cells, we generated Ecd(lox/lox) mouse embryonic fibroblast cells from Ecd floxed mouse embryos. Cre-mediated deletion of Ecd in Ecd(lox/lox) mouse embryonic fibroblasts led to a proliferative block due to a delay in G(1)-S cell cycle progression; this  ...[more]

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