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The genome of the sea urchin Strongylocentrotus purpuratusTracking a refined eIF4E-binding motif reveals Angel1 as a new partner of eIF4EPoly(A)-binding protein and eRF3 are associated in vivo in human and Xenopus cellsCUG-BP1/CELF1 requires UGU-rich sequences for high-affinity bindingCharacterization of the poly(A) binding proteins expressed during oogenesis and early development of Xenopus laevis.A variant mimicking hyperphosphorylated 4E-BP inhibits protein synthesis in a sea urchin cell-free, cap-dependent translation system.Poly(A)-binding protein acts in translation termination via eukaryotic release factor 3 interaction and does not influence [PSI(+)] propagation.An eIF4E-interacting peptide induces cell death in cancer cell lines.IRFinder: assessing the impact of intron retention on mammalian gene expression.The ARE-associated factor AUF1 binds poly(A) in vitro in competition with PABP.The rotaviral NSP3 protein stimulates translation of polyadenylated target mRNAs independently of its RNA-binding domain.The genomic repertoire for cell cycle control and DNA metabolism in S. purpuratus.Translational control genes in the sea urchin genome.The translational repressor 4E-BP called to order by eIF4E: new structural insights by SAXS.After fertilization of sea urchin eggs, eIF4G is post-translationally modified and associated with the cap-binding protein eIF4E.[Sea urchin embryo, DNA-damaged cell cycle checkpoint and the mechanisms initiating cancer development].In vivo studies of translational repression mediated by the granulocyte-macrophage colony-stimulating factor AU-rich element.Looking for nuclear translation using xenopus oocytes.Dephosphorylation of eIF2α is essential for protein synthesis increase and cell cycle progression after sea urchin fertilization.[Initiation factors eIF4: from sea urchin embryonic development to chronic lymphocytic leukemia].[Gene expression regulation at the translational level: contribution of marine organisms].A SUMO-dependent feedback loop senses and controls the biogenesis of nuclear pore subunits.Identification of a novel Xenopus laevis poly (A) binding proteinA SUMO-dependent feedback loop senses and controls the biogenesis of nuclear pore subunitsEvolution of eIF4E-Interacting ProteinsFolate-conjugated stealth archaeosomes for the targeted delivery of novel antitumoral peptidesTranslational Control in Echinoderms: The Calm Before the StormOligomerization of EDEN-BP is required for specific mRNA deadenylation and bindingNovel orally active iron chelators (3-hydroxypyridin-4-ones) enhance the biliary excretion of plasma non-transferrin-bound iron in rats
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description
researcher
@en
wetenschapper
@nl
հետազոտող
@hy
name
Bertrand Cosson
@ast
Bertrand Cosson
@en
Bertrand Cosson
@es
Bertrand Cosson
@nl
type
label
Bertrand Cosson
@ast
Bertrand Cosson
@en
Bertrand Cosson
@es
Bertrand Cosson
@nl
prefLabel
Bertrand Cosson
@ast
Bertrand Cosson
@en
Bertrand Cosson
@es
Bertrand Cosson
@nl
P106
P21
P31
P496
0000-0003-3401-7137