Interactome of two diverse RNA granules links mRNA localization to translational repression in neurons.
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G. Superti-Furga | K. Bennett | M. Kiebler | J. Colinge | M. Planyavsky | K. Bauer | Marco Tolino | P. Macchi | Z. Pálfi | D. Karra | Jacki E. Heraud-Farlow | Alexandra Hörmann | Sabine Thomas | E. Arn | Martina Schwarz | Michael Doyle | R. Fritzsche | Foong yee Ang | A. Bakosova | Kerstin Jungwirth | J. Sandholzer | Melanie Planyavsky
[1] Q. Morris,et al. Staufen2 regulates neuronal target RNAs. , 2013, Cell reports.
[2] H. Le Hir,et al. EJC core component MLN51 interacts with eIF3 and activates translation , 2013, Proceedings of the National Academy of Sciences.
[3] M. Kiebler,et al. An asymmetrically localized Staufen2-dependent RNA complex regulates maintenance of mammalian neural stem cells. , 2012, Cell stem cell.
[4] Sanjay Tyagi,et al. Neuronal mRNAs travel singly into dendrites , 2012, Proceedings of the National Academy of Sciences.
[5] Simon L. Bullock,et al. Single-molecule assays reveal that RNA localization signals regulate dynein-dynactin copy number on individual transcript cargoes , 2012, Nature Cell Biology.
[6] M. Kiebler,et al. Mechanisms of dendritic mRNA transport and its role in synaptic tagging , 2011, The EMBO journal.
[7] M. Kiebler,et al. Independent localization of MAP2, CaMKIIα and β-actin RNAs in low copy numbers , 2011, EMBO reports.
[8] L. Maquat,et al. UPF1 association with the cap-binding protein, CBP80, promotes nonsense-mediated mRNA decay at two distinct steps. , 2010, Molecular cell.
[9] L. DesGroseillers,et al. Molecular Composition of Staufen2-Containing Ribonucleoproteins in Embryonic Rat Brain , 2010, PloS one.
[10] M. Kiebler,et al. Dendritically Localized Transcripts Are Sorted into Distinct Ribonucleoprotein Particles That Display Fast Directional Motility along Dendrites of Hippocampal Neurons , 2010, The Journal of Neuroscience.
[11] M. Kiebler,et al. Mammalian Pumilio 2 regulates dendrite morphogenesis and synaptic function , 2010, Proceedings of the National Academy of Sciences.
[12] K. Kosik,et al. A Coordinated Local Translational Control Point at the Synapse Involving Relief from Silencing and MOV10 Degradation , 2009, Neuron.
[13] M. Kiebler,et al. What are the roles of microRNAs at the mammalian synapse? , 2009, Neuroscience Letters.
[14] C. Holt,et al. Subcellular mRNA Localization in Animal Cells and Why It Matters , 2009, Science.
[15] Yoon Ki Kim,et al. A new MIF4G domain-containing protein, CTIF, directs nuclear cap-binding protein CBP80/20-dependent translation. , 2009, Genes & development.
[16] K. Martin,et al. mRNA Localization: Gene Expression in the Spatial Dimension , 2009, Cell.
[17] M. Molinari,et al. Dendritic LSm1/CBP80-mRNPs mark the early steps of transport commitment and translational control , 2009, The Journal of cell biology.
[18] N. Sonenberg,et al. Translational Control of Long-Lasting Synaptic Plasticity and Memory , 2009, Neuron.
[19] D. St Johnston,et al. In Vivo Imaging of oskar mRNA Transport Reveals the Mechanism of Posterior Localization , 2008, Cell.
[20] M. Kiebler,et al. Dynamic Interaction between P-Bodies and Transport Ribonucleoprotein Particles in Dendrites of Mature Hippocampal Neurons , 2008, The Journal of Neuroscience.
[21] Bertrand Séraphin,et al. EJCs at the Heart of Translational Control , 2008, Cell.
[22] P. Anderson,et al. Stress granules: the Tao of RNA triage. , 2008, Trends in biochemical sciences.
[23] Gene W. Yeo,et al. The EJC Factor eIF4AIII Modulates Synaptic Strength and Neuronal Protein Expression , 2007, Cell.
[24] A. Krogh,et al. Molecular Composition of IMP1 Ribonucleoprotein Granules*S , 2007, Molecular & Cellular Proteomics.
[25] W. Greene,et al. High-molecular-mass APOBEC3G complexes restrict Alu retrotransposition , 2006, Proceedings of the National Academy of Sciences.
[26] E. Schuman,et al. Dendritic Protein Synthesis, Synaptic Plasticity, and Memory , 2006, Cell.
[27] B. Séraphin,et al. Structure of the Exon Junction Core Complex with a Trapped DEAD-Box ATPase Bound to RNA , 2006, Science.
[28] M. Kiebler,et al. Neuronal RNA Granules: Movers and Makers , 2006, Neuron.
[29] J. Ebert,et al. The Crystal Structure of the Exon Junction Complex Reveals How It Maintains a Stable Grip on mRNA , 2006, Cell.
[30] Ralf Dahm,et al. Dendritic Localization of the Translational Repressor Pumilio 2 and Its Contribution to Dendritic Stress Granules , 2006, The Journal of Neuroscience.
[31] J. Lacaille,et al. Characterization of an RNA Granule from Developing Brain *S , 2006, Molecular & Cellular Proteomics.
[32] M. Kiebler,et al. The brain-specific double-stranded RNA-binding protein Staufen2 is required for dendritic spine morphogenesis , 2006, The Journal of cell biology.
[33] S. Kunes,et al. Synaptic Protein Synthesis Associated with Memory Is Regulated by the RISC Pathway in Drosophila , 2006, Cell.
[34] T. Tuschl,et al. Identification of Novel Argonaute-Associated Proteins , 2005, Current Biology.
[35] J. Condeelis,et al. Spatial regulation of β-actin translation by Src-dependent phosphorylation of ZBP1 , 2005, Nature.
[36] B. Séraphin,et al. The exon junction core complex is locked onto RNA by inhibition of eIF4AIII ATPase activity , 2005, Nature Structural &Molecular Biology.
[37] Daniel St Johnston,et al. Moving messages: the intracellular localization of mRNAs , 2005, Nature Reviews Molecular Cell Biology.
[38] D. Richter,et al. Characterization of Staufen 1 ribonucleoprotein complexes. , 2004, The Biochemical journal.
[39] Nobutaka Hirokawa,et al. Kinesin Transports RNA Isolation and Characterization of an RNA-Transporting Granule , 2004, Neuron.
[40] R. M. Marión,et al. The composition of Staufen-containing RNA granules from human cells indicates their role in the regulated transport and translation of messenger RNAs. , 2004, Nucleic acids research.
[41] D. Gatfield,et al. An eIF4AIII-containing complex required for mRNA localization and nonsense-mediated mRNA decay , 2004, Nature.
[42] Sophie G. Martin,et al. The identification of novel genes required for Drosophila anteroposterior axis formation in a germline clone screen using GFP-Staufen , 2003, Development.
[43] M. Kiebler,et al. Barentsz, a New Component of the Staufen-Containing Ribonucleoprotein Particles in Mammalian Cells, Interacts with Staufen in an RNA-Dependent Manner , 2003, The Journal of Neuroscience.
[44] M. Kiebler,et al. Isolation and characterization of Staufen-containing ribonucleoprotein particles from rat brain , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[45] Ann-Shyn Chiang,et al. The staufen/pumilio Pathway Is Involved in Drosophila Long-Term Memory , 2003, Current Biology.
[46] M. Mann,et al. Stop and go extraction tips for matrix-assisted laser desorption/ionization, nanoelectrospray, and LC/MS sample pretreatment in proteomics. , 2003, Analytical chemistry.
[47] M. Kiebler,et al. Staufen2 isoforms localize to the somatodendritic domain of neurons and interact with different organelles. , 2002, Journal of cell science.
[48] Kenneth S Kosik,et al. Neuronal RNA Granules A Link between RNA Localization and Stimulation-Dependent Translation , 2001, Neuron.
[49] E. Schuman,et al. A Role for a Rat Homolog of Staufen in the Transport of RNA to Neuronal Dendrites , 2001, Neuron.
[50] F. V. van Eeden,et al. Barentsz is essential for the posterior localization of oskar mRNA and colocalizes with it to the posterior pole , 2001, The Journal of cell biology.
[51] M. Kiebler,et al. Microtubule-dependent recruitment of Staufen-green fluorescent protein into large RNA-containing granules and subsequent dendritic transport in living hippocampal neurons. , 1999, Molecular biology of the cell.
[52] M. Kiebler,et al. Purification and characterization of rat hippocampal CA3‐dendritic spines associated with mossy fiber terminals , 1999, FEBS Letters.
[53] J. Brosius,et al. Translational Machinery in Dendrites of Hippocampal Neurons in Culture , 1996, Journal of Neuroscience.
[54] A. Shevchenko,et al. Mass spectrometric sequencing of proteins silver-stained polyacrylamide gels. , 1996, Analytical chemistry.
[55] T. Sisson,et al. An improved method for immobilizing IgG antibodies on protein A-agarose. , 1990, Journal of immunological methods.
[56] D. Wessel,et al. A method for the quantitative recovery of protein in dilute solution in the presence of detergents and lipids. , 1984, Analytical biochemistry.
[57] E. Jankowsky. RNA helicases at work: binding and rearranging. , 2011, Trends in biochemical sciences.
[58] E. Harlow,et al. Antibodies: A Laboratory Manual , 1988 .