AbstractThe mRNA’s cap-binding protein eukaryotic translation initiation factor (eIF)4E is a major target for the regulation of translation initiation. eIF4E activity is controlled by a family of translation inhibitors, the eIF4E-binding proteins (4E-BPs). We have previously shown that a rapid dissociation of 4E-BP from eIF4E is related with the dramatic rise in protein synthesis that occurs following sea urchin fertilization. Here, we demonstrate that 4E-BP is destroyed shortly following fertilization and that 4E-BP degradation is sensitive to rapamycin, suggesting that proteolysis could be a novel means of regulating 4E-BP function. We also show that eIF4E/4E-BP dissociation following fertilization is sensitive to rapamycin. Furthermore, ...
Cell division is a highly regulated process and when a problem occurs, the cell cycle checkpoints ar...
International audienceSea urchin eggs and early cleavage stage embryos provide an example of regulat...
AbstractSea urchin eggs and early cleavage stage embryos provide an example of regulated gene expres...
AbstractThe mRNA’s cap-binding protein eukaryotic translation initiation factor (eIF)4E is a major t...
During this decade, the involvement of translation initiation factors was highlighted in the process...
During the first steps of sea urchin development, fertilization elicits a marked increase in protein...
Sea urchin early development is a powerful model to study translational regulation under physiologic...
International audienceDuring the first steps of sea urchin development, fertilization elicits a mark...
Sea urchin eggs fertilization induces a protein synthesis increase required for cell cycle entry and...
AbstractThe eukaryotic translation initiation factor (eIF) 4F facilitates the recruitment of ribosom...
International audienceThe cyclin B/CDK1 complex is a key regulator of mitotic entry. Using PP242, a ...
BACKGROUND: 4E-BP is a translational inhibitor that binds to eIF4E to repress cap-dependent translat...
4E-BP is a translational inhibitor that binds to eIF4E to repress cap-dependent translation initiati...
Fertilization of sea urchin eggs involves an increase in protein synthesis associated with a decreas...
AbstractThe eukaryotic Initiation Factor 2 (eIF2) is a key regulator of protein synthesis in eukaryo...
Cell division is a highly regulated process and when a problem occurs, the cell cycle checkpoints ar...
International audienceSea urchin eggs and early cleavage stage embryos provide an example of regulat...
AbstractSea urchin eggs and early cleavage stage embryos provide an example of regulated gene expres...
AbstractThe mRNA’s cap-binding protein eukaryotic translation initiation factor (eIF)4E is a major t...
During this decade, the involvement of translation initiation factors was highlighted in the process...
During the first steps of sea urchin development, fertilization elicits a marked increase in protein...
Sea urchin early development is a powerful model to study translational regulation under physiologic...
International audienceDuring the first steps of sea urchin development, fertilization elicits a mark...
Sea urchin eggs fertilization induces a protein synthesis increase required for cell cycle entry and...
AbstractThe eukaryotic translation initiation factor (eIF) 4F facilitates the recruitment of ribosom...
International audienceThe cyclin B/CDK1 complex is a key regulator of mitotic entry. Using PP242, a ...
BACKGROUND: 4E-BP is a translational inhibitor that binds to eIF4E to repress cap-dependent translat...
4E-BP is a translational inhibitor that binds to eIF4E to repress cap-dependent translation initiati...
Fertilization of sea urchin eggs involves an increase in protein synthesis associated with a decreas...
AbstractThe eukaryotic Initiation Factor 2 (eIF2) is a key regulator of protein synthesis in eukaryo...
Cell division is a highly regulated process and when a problem occurs, the cell cycle checkpoints ar...
International audienceSea urchin eggs and early cleavage stage embryos provide an example of regulat...
AbstractSea urchin eggs and early cleavage stage embryos provide an example of regulated gene expres...