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  • Author: Idrissi FZ
  • References

Author: Idrissi FZ


References 20 references


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  • Teixeira V, et al. (2018) Regulation of lipid droplets by metabolically controlled Ldo isoforms. J Cell Biol 217(1):127-138 PMID:29187528
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  • Wang S, et al. (2018) Seipin and the membrane-shaping protein Pex30 cooperate in organelle budding from the endoplasmic reticulum. Nat Commun 9(1):2939 PMID:30054465
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  • Encinar Del Dedo J, et al. (2017) ORP-Mediated ER Contact with Endocytic Sites Facilitates Actin Polymerization. Dev Cell 43(5):588-602.e6 PMID:29173820
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  • Amaral N, et al. (2016) The Aurora-B-dependent NoCut checkpoint prevents damage of anaphase bridges after DNA replication stress. Nat Cell Biol 18(5):516-26 PMID:27111841
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  • Grippa A, et al. (2015) The seipin complex Fld1/Ldb16 stabilizes ER-lipid droplet contact sites. J Cell Biol 211(4):829-44 PMID:26572621
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  • Encinar del Dedo J, et al. (2014) Eng2 is a component of a dynamic protein complex required for endocytic uptake in fission yeast. Traffic 15(10):1122-42 PMID:25040903
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  • Fernández-Golbano IM, et al. (2014) Crosstalk between PI(4,5)P₂and CK2 modulates actin polymerization during endocytic uptake. Dev Cell 30(6):746-58 PMID:25268174
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  • Idrissi FZ and Geli MI (2014) Zooming in on the molecular mechanisms of endocytic budding by time-resolved electron microscopy. Cell Mol Life Sci 71(4):641-57 PMID:24002236
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  • Idrissi FZ, et al. (2012) Ultrastructural dynamics of proteins involved in endocytic budding. Proc Natl Acad Sci U S A 109(39):E2587-94 PMID:22949647
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  • Giblin J, et al. (2011) Function and regulation of Saccharomyces cerevisiae myosins-I in endocytic budding. Biochem Soc Trans 39(5):1185-90 PMID:21936786
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  • Grötsch H, et al. (2010) Calmodulin dissociation regulates Myo5 recruitment and function at endocytic sites. EMBO J 29(17):2899-914 PMID:20647997
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  • Girao H, et al. (2008) Actin in the endocytic pathway: from yeast to mammals. FEBS Lett 582(14):2112-9 PMID:18420037
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  • Idrissi FZ, et al. (2008) Distinct acto/myosin-I structures associate with endocytic profiles at the plasma membrane. J Cell Biol 180(6):1219-32 PMID:18347067
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  • Grosshans BL, et al. (2006) TEDS site phosphorylation of the yeast myosins I is required for ligand-induced but not for constitutive endocytosis of the G protein-coupled receptor Ste2p. J Biol Chem 281(16):11104-14 PMID:16478726
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  • Newpher TM, et al. (2006) Novel function of clathrin light chain in promoting endocytic vesicle formation. Mol Biol Cell 17(10):4343-52 PMID:16870700
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  • Piña B, et al. (2003) The different (sur)faces of Rap1p. Mol Genet Genomics 268(6):791-8 PMID:12655405
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  • Idrissi FZ, et al. (2002) Cofilin, but not profilin, is required for myosin-I-induced actin polymerization and the endocytic uptake in yeast. Mol Biol Cell 13(11):4074-87 PMID:12429847
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  • Idrissi FZ, et al. (2001) Alternative mechanisms of transcriptional activation by Rap1p. J Biol Chem 276(28):26090-8 PMID:11358963
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  • Idrissi FZ and Piña B (1999) Functional divergence between the half-sites of the DNA-binding sequence for the yeast transcriptional regulator Rap1p. Biochem J 341 ( Pt 3)(Pt 3):477-82 PMID:10417308
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  • Idrissi FZ, et al. (1998) Structural and functional heterogeneity of Rap1p complexes with telomeric and UASrpg-like DNA sequences. J Mol Biol 284(4):925-35 PMID:9837716
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