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Cormier patrick's profile
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What I do
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Affiliations
Current affiliations
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- Position
- Professor
- Company
- Station Biologique Roscoff, UMR UPMC/CNRS 7150 group cell cycle and development
- Further information
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Interests
We work on translational regulation and cell cycle relationships. Our favorite model is the sea urchin early development. Recently the sea urchin genome project offered opportunity to access directly to the sequence encoding for translational regulators and to obtain new insights into the translational regulation mechanisms. We also develop researches analysing translational regulation in human cancer.
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Projects
analysis of networks of translational regulators in early development of sea urchin embryos.
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Publications
Le Bouffant R, Cormier P, Cueff A, Bellé R, Mulner-Lorillon O. Sea urchin embryo as a model for analysis of the signaling pathways linking DNA damage checkpoint, DNA repair and apoptosis. Cellular and molecular life sciences : CMLS (13) , 1723-34 PubMed ID:(17497240 )
Le Bouffant R, Cormier P, Mulner-Lorillon O, Bellé R. Hypoxia and DNA-damaging agent bleomycin both increase the cellular level of the protein 4E-BP. Journal of cellular biochemistry (1) , 126-32 PubMed ID:(16598776)
Morales J, Mulner-Lorillon O, Cosson B, Morin E, Bellé R, Bradham C, Beane W, Cormier P. Translational control genes in the sea urchin genome. Developmental biology (1) , 293-307 (Epub 04 Aug 2006) PubMed ID:(16959243)
Oulhen N, Salaün P, Cosson B, Cormier P, Morales J. After fertilization of sea urchin eggs, eIF4G is post-translationally modified and associated with the cap-binding protein eIF4E. Journal of cell science (Pt 3) , 425-34 (Epub 09 Jan 2007) PubMed ID:(17213333)
Salaün P, Boulben S, Mulner-Lorillon O, Bellé R, Sonenberg N, Morales J, Cormier P. Embryonic-stage-dependent changes in the level of eIF4E-binding proteins during early development of sea urchin embryos. Journal of cell science (Pt 7) , 1385-94 (Epub 15 Mar 2005) PubMed ID:(15769855)
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Cormier patrick's activity on Nature Network
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