Monosomes actively translate synaptic mRNAs in neuronal processes
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[1] Gianluca Pollastri,et al. Deeper Profiles and Cascaded Recurrent and Convolutional Neural Networks for state-of-the-art Protein Secondary Structure Prediction , 2019, Scientific Reports.
[2] Hagen U. Tilgner,et al. SynGO: An Evidence-Based, Expert-Curated Knowledge Base for the Synapse , 2019, Neuron.
[3] C. Holt,et al. Local translation in neurons: visualization and function , 2019, Nature Structural & Molecular Biology.
[4] E. Schuman,et al. Local translation in neuronal processes , 2019, Current Opinion in Neurobiology.
[5] D. Sulzer,et al. Widespread Alterations in Translation Elongation in the Brain of Juvenile Fmr1 Knockout Mice. , 2019, Cell reports.
[6] Jing Zhao,et al. Translatomics: The Global View of Translation , 2019, International journal of molecular sciences.
[7] E. Schuman,et al. Local protein synthesis in axon terminals and dendritic spines differentiates plasticity contexts , 2018, bioRxiv.
[8] C. Gross,et al. microRNAs Sculpt Neuronal Communication in a Tight Balance That Is Lost in Neurological Disease , 2018, Front. Mol. Neurosci..
[9] Pietro Sormanni,et al. A chemical kinetic basis for measuring translation initiation and elongation rates from ribosome profiling data , 2018, bioRxiv.
[10] J. Frydman,et al. The stop-and-go traffic regulating protein biogenesis: How translation kinetics controls proteostasis , 2018, The Journal of Biological Chemistry.
[11] Johannes J. Letzkus,et al. Learning-Related Plasticity in Dendrite-Targeting Layer 1 Interneurons , 2018, Neuron.
[12] T. Schikorski,et al. Comparative synaptosome imaging: a semi-quantitative method to obtain copy numbers for synaptic and neuronal proteins , 2018, Scientific Reports.
[13] Laura B. Moores. Compartments , 2018, Cultural and Pedagogical Inquiry.
[14] W. Sossin,et al. Translational Control in the Brain in Health and Disease. , 2018, Cold Spring Harbor perspectives in biology.
[15] M. Barna,et al. The Discovery of Ribosome Heterogeneity and Its Implications for Gene Regulation and Organismal Life. , 2018, Molecular cell.
[16] C. Holt,et al. Molecular control of local translation in axon development and maintenance , 2018, Current Opinion in Neurobiology.
[17] L. Kapitein,et al. Exploring cytoskeletal diversity in neurons , 2018, Science.
[18] K. Harris,et al. Shifting patterns of polyribosome accumulation at synapses over the course of hippocampal long‐term potentiation , 2018, Hippocampus.
[19] Erin M. Schuman,et al. Alternative 3′ UTRs Modify the Localization, Regulatory Potential, Stability, and Plasticity of mRNAs in Neuronal Compartments , 2018, Neuron.
[20] Joseph G Ibrahim,et al. Heavy-tailed prior distributions for sequence count data: removing the noise and preserving large differences , 2018, bioRxiv.
[21] Rhiju Das,et al. Functional 5′ UTR mRNA structures in eukaryotic translation regulation and how to find them , 2017, Nature Reviews Molecular Cell Biology.
[22] Alfonso Valencia,et al. APPRIS 2017: principal isoforms for multiple gene sets , 2017, Nucleic Acids Res..
[23] C. Bramham,et al. Arc protein: a flexible hub for synaptic plasticity and cognition. , 2017, Seminars in cell & developmental biology.
[24] C. Mayr. Regulation by 3'-Untranslated Regions. , 2017, Annual review of genetics.
[25] E. Valjent,et al. Cell Type-Specific mRNA Dysregulation in Hippocampal CA1 Pyramidal Neurons of the Fragile X Syndrome Mouse Model , 2017, Front. Mol. Neurosci..
[26] N. Rajewsky,et al. RNA localization is a key determinant of neurite-enriched proteome , 2017, Nature Communications.
[27] Nicholas T Ingolia,et al. Transcriptome-wide measurement of translation by ribosome profiling. , 2017, Methods.
[28] E. Schuman,et al. mRNA transport & local translation in neurons , 2017, Current Opinion in Neurobiology.
[29] J. Bonifacino,et al. BORC/kinesin-1 ensemble drives polarized transport of lysosomes into the axon , 2017, Proceedings of the National Academy of Sciences.
[30] E. Schuman,et al. Activity-dependent spatially localized miRNA maturation in neuronal dendrites , 2017, Science.
[31] L. Ciandrini,et al. Gene length as a regulator for ribosome recruitment and protein synthesis: theoretical insights , 2017, Scientific Reports.
[32] Joseph E LeDoux,et al. Accumulation of Polyribosomes in Dendritic Spine Heads, But Not Bases and Necks, during Memory Consolidation Depends on Cap-Dependent Translation Initiation , 2017, The Journal of Neuroscience.
[33] Kenneth S Kosik,et al. Life at Low Copy Number: How Dendrites Manage with So Few mRNAs , 2016, Neuron.
[34] W. Gilbert,et al. mRNA length-sensing in eukaryotic translation: reconsidering the “closed loop” and its implications for translational control , 2016, Current Genetics.
[35] I. Katona,et al. Presynaptic Protein Synthesis Is Required for Long-Term Plasticity of GABA Release , 2016, Neuron.
[36] E. Valjent,et al. Anatomical and molecular characterization of dopamine D1 receptor-expressing neurons of the mouse CA1 dorsal hippocampus , 2016, Brain Structure and Function.
[37] Marco Y. Hein,et al. The Perseus computational platform for comprehensive analysis of (prote)omics data , 2016, Nature Methods.
[38] J. Frydman,et al. Cotranslational signal independent SRP preloading during membrane targeting , 2016, Nature.
[39] David Balchin,et al. In vivo aspects of protein folding and quality control , 2016, Science.
[40] C. Holt,et al. Dynamic Axonal Translation in Developing and Mature Visual Circuits , 2016, Cell.
[41] X. Zhuang,et al. Real-Time Imaging of Translation on Single mRNA Transcripts in Live Cells , 2016, Cell.
[42] W. Gilbert,et al. The ribosomal protein Asc1/RACK1 is required for efficient translation of short mRNAs , 2016, eLife.
[43] Melissa J. Moore,et al. Redefining the Translational Status of 80S Monosomes , 2016, Cell.
[44] Eric T. Wang,et al. Distal Alternative Last Exons Localize mRNAs to Neural Projections. , 2016, Molecular cell.
[45] José A. Dianes,et al. 2016 update of the PRIDE database and its related tools , 2016, Nucleic Acids Res..
[46] J. Coller,et al. Pausing on Polyribosomes: Make Way for Elongation in Translational Control , 2015, Cell.
[47] Jeffrey A. Hussmann,et al. Improved ribosome-footprint and mRNA measurements provide insights into dynamics and regulation of yeast translation , 2015, bioRxiv.
[48] T. Südhof,et al. Synaptic Function of Rab11Fip5: Selective Requirement for Hippocampal Long-Term Depression , 2015, The Journal of Neuroscience.
[49] S. Markey,et al. Quantitative mass spectrometry measurements reveal stoichiometry of principal postsynaptic density proteins. , 2015, Journal of proteome research.
[50] A. Nishi,et al. PKA-Dependent Phosphorylation of Ribosomal Protein S6 Does Not Correlate with Translation Efficiency in Striatonigral and Striatopallidal Medium-Sized Spiny Neurons , 2015, Journal of Neuroscience.
[51] S. Linnarsson,et al. Cell types in the mouse cortex and hippocampus revealed by single-cell RNA-seq , 2015, Science.
[52] C. Bramham,et al. Two-stage translational control of dentate gyrus LTP consolidation is mediated by sustained BDNF-TrkB signaling to MNK. , 2014, Cell reports.
[53] E. Trotta,et al. On the Normalization of the Minimum Free Energy of RNAs by Sequence Length , 2014, PloS one.
[54] W. Huber,et al. Moderated estimation of fold change and dispersion for RNA-seq data with DESeq2 , 2014, Genome Biology.
[55] Rodrigo Herrera-Molina,et al. The Neuroplastin adhesion molecules: key regulators of neuronal plasticity and synaptic function , 2014, Journal of neurochemistry.
[56] Tamir Tuller,et al. The effect of tRNA levels on decoding times of mRNA codons , 2014, Nucleic acids research.
[57] Hong Wang,et al. Loss of Cdc42 leads to defects in synaptic plasticity and remote memory recall , 2014, eLife.
[58] L. Dugué,et al. Anisomycin injection in area CA3 of the hippocampus impairs both short-term and long-term memories of contextual fear , 2014, Learning & memory.
[59] Michael Krauss,et al. Composition of isolated synaptic boutons reveals the amounts of vesicle trafficking proteins , 2014, Science.
[60] S. Joseph,et al. Fragile X mental retardation protein regulates translation by binding directly to the ribosome. , 2014, Molecular cell.
[61] Avni Baser,et al. In vivo interrogation of central nervous system translatome by polyribosome fractionation. , 2014, Journal of visualized experiments : JoVE.
[62] Matthew Fraser,et al. InterProScan 5: genome-scale protein function classification , 2014, Bioinform..
[63] Wei Shi,et al. featureCounts: an efficient general purpose program for assigning sequence reads to genomic features , 2013, Bioinform..
[64] E. Klann,et al. Mechanisms of translation control underlying long-lasting synaptic plasticity and the consolidation of long-term memory. , 2014, Progress in molecular biology and translational science.
[65] J. Lacaille,et al. Reactivation of stalled polyribosomes in synaptic plasticity , 2013, Proceedings of the National Academy of Sciences.
[66] H. Kasper,et al. Synthetic microRNA-mediated downregulation of Nogo-A in transgenic rats reveals its role as regulator of synaptic plasticity and cognitive function , 2013, Proceedings of the National Academy of Sciences.
[67] M. Selbach,et al. Corrigendum: Global quantification of mammalian gene expression control , 2013, Nature.
[68] M. Carmen Romano,et al. Ribosome Traffic on mRNAs Maps to Gene Ontology: Genome-wide Quantification of Translation Initiation Rates and Polysome Size Regulation , 2013, PLoS Comput. Biol..
[69] Thomas R. Gingeras,et al. STAR: ultrafast universal RNA-seq aligner , 2013, Bioinform..
[70] Jürgen Cox,et al. 1D and 2D annotation enrichment: a statistical method integrating quantitative proteomics with complementary high-throughput data , 2012, BMC Bioinformatics.
[71] Michael J. Sweredoski,et al. Dopaminergic modulation of the hippocampal neuropil proteome identified by bioorthogonal noncanonical amino acid tagging (BONCAT) , 2012, Proteomics.
[72] Anna M. McGeachy,et al. The ribosome profiling strategy for monitoring translation in vivo by deep sequencing of ribosome-protected mRNA fragments , 2012, Nature Protocols.
[73] R. Zukin,et al. Bidirectional control of mRNA translation and synaptic plasticity by the cytoplasmic polyadenylation complex. , 2012, Molecular cell.
[74] J. Darnell,et al. Cytoplasmic RNA-binding proteins and the control of complex brain function. , 2012, Cold Spring Harbor perspectives in biology.
[75] Erin M. Schuman,et al. The Local Transcriptome in the Synaptic Neuropil Revealed by Deep Sequencing and High-Resolution Imaging , 2012, Neuron.
[76] Guangchuang Yu,et al. clusterProfiler: an R package for comparing biological themes among gene clusters. , 2012, Omics : a journal of integrative biology.
[77] Philippe Pierre,et al. Nuclear translation visualized by ribosome-bound nascent chain puromycylation , 2012, The Journal of cell biology.
[78] Steven L Salzberg,et al. Fast gapped-read alignment with Bowtie 2 , 2012, Nature Methods.
[79] Ji Yu,et al. Single-molecule imaging of translational output from individual RNA granules in neurons , 2012, Molecular biology of the cell.
[80] Kristen M Harris,et al. Ultrastructure of synapses in the mammalian brain. , 2012, Cold Spring Harbor perspectives in biology.
[81] M. Sheng,et al. The postsynaptic organization of synapses. , 2011, Cold Spring Harbor perspectives in biology.
[82] Peter F. Stadler,et al. ViennaRNA Package 2.0 , 2011, Algorithms for Molecular Biology.
[83] Nicholas T. Ingolia,et al. Ribosome Profiling of Mouse Embryonic Stem Cells Reveals the Complexity and Dynamics of Mammalian Proteomes , 2011, Cell.
[84] Martin Kircher,et al. Deep proteome and transcriptome mapping of a human cancer cell line , 2011, Molecular systems biology.
[85] D. Licatalosi,et al. FMRP Stalls Ribosomal Translocation on mRNAs Linked to Synaptic Function and Autism , 2011, Cell.
[86] Eric A. Vitriol,et al. Actin Capping Protein Is Required for Dendritic Spine Development and Synapse Formation , 2011, The Journal of Neuroscience.
[87] S. Warren,et al. Reversible inhibition of PSD-95 mRNA translation by miR-125a, FMRP phosphorylation, and mGluR signaling. , 2011, Molecular cell.
[88] Marcel Martin. Cutadapt removes adapter sequences from high-throughput sequencing reads , 2011 .
[89] M. Selbach,et al. Global quantification of mammalian gene expression control , 2011, Nature.
[90] J. Plotkin,et al. Synonymous but not the same: the causes and consequences of codon bias , 2011, Nature Reviews Genetics.
[91] A. Riccio,et al. An NGF-responsive element targets myo-inositol monophosphatase-1 mRNA to sympathetic neuron axons , 2010, Nature Neuroscience.
[92] Aaron R. Quinlan,et al. Bioinformatics Applications Note Genome Analysis Bedtools: a Flexible Suite of Utilities for Comparing Genomic Features , 2022 .
[93] Linda Westin,et al. Norbin Is an Endogenous Regulator of Metabotropic Glutamate Receptor 5 Signaling , 2009, Science.
[94] R. Palmiter,et al. Cell-type-specific isolation of ribosome-associated mRNA from complex tissues , 2009, Proceedings of the National Academy of Sciences.
[95] Bernd Bukau,et al. The ribosome as a platform for co-translational processing, folding and targeting of newly synthesized proteins , 2009, Nature Structural &Molecular Biology.
[96] M. Mann,et al. Universal sample preparation method for proteome analysis , 2009, Nature Methods.
[97] Nicholas T. Ingolia,et al. Genome-Wide Analysis in Vivo of Translation with Nucleotide Resolution Using Ribosome Profiling , 2009, Science.
[98] Philippe Pierre,et al. SUnSET, a nonradioactive method to monitor protein synthesis , 2009, Nature Methods.
[99] M. Mann,et al. MaxQuant enables high peptide identification rates, individualized p.p.b.-range mass accuracies and proteome-wide protein quantification , 2008, Nature Biotechnology.
[100] E. Schuman,et al. Postsynaptic Decoding of Neural Activity: eEF2 as a Biochemical Sensor Coupling Miniature Synaptic Transmission to Local Protein Synthesis , 2007, Neuron.
[101] Gene W. Yeo,et al. The EJC Factor eIF4AIII Modulates Synaptic Strength and Neuronal Protein Expression , 2007, Cell.
[102] J. Bourne,et al. Polyribosomes are increased in spines of CA1 dendrites 2 h after the induction of LTP in mature rat hippocampal slices , 2007, Hippocampus.
[103] Kelsey C. Martin,et al. Identification of Process-Localized mRNAs from Cultured Rodent Hippocampal Neurons , 2006, The Journal of Neuroscience.
[104] J. D. McGaugh,et al. Anisomycin infused into the hippocampus fails to block "reconsolidation" but impairs extinction: the role of re-exposure duration. , 2006, Learning & memory.
[105] Wen G. Chen,et al. BDNF Regulates the Translation of a Select Group of mRNAs by a Mammalian Target of Rapamycin-Phosphatidylinositol 3-Kinase-Dependent Pathway during Neuronal Development , 2004, The Journal of Neuroscience.
[106] P. Greengard,et al. Phactrs 1-4: A family of protein phosphatase 1 and actin regulatory proteins. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[107] Terrence S. Furey,et al. The UCSC Table Browser data retrieval tool , 2004, Nucleic Acids Res..
[108] Mark Gerstein,et al. Revisiting the codon adaptation index from a whole-genome perspective: analyzing the relationship between gene expression and codon occurrence in yeast using a variety of models. , 2003, Nucleic acids research.
[109] J. Fiala,et al. Polyribosomes Redistribute from Dendritic Shafts into Spines with Enlarged Synapses during LTP in Developing Rat Hippocampal Slices , 2002, Neuron.
[110] P. Knopf,et al. The discovery of polyribosomes. , 2002, Trends in biochemical sciences.
[111] Tom H. Pringle,et al. The human genome browser at UCSC. , 2002, Genome research.
[112] Erin M. Schuman,et al. Dynamic Visualization of Local Protein Synthesis in Hippocampal Neurons , 2001, Neuron.
[113] L. Mannucci,et al. Chemical Stimulation of Synaptosomes Modulates α-Ca2+/Calmodulin-Dependent Protein Kinase II mRNA Association to Polysomes , 2000, The Journal of Neuroscience.
[114] Carol A Barnes,et al. Arc, a growth factor and activity-regulated gene, encodes a novel cytoskeleton-associated protein that is enriched in neuronal dendrites , 1995, Neuron.
[115] Alcino J. Silva,et al. Deficient hippocampal long-term potentiation in alpha-calcium-calmodulin kinase II mutant mice. , 1992, Science.
[116] KM Harris,et al. Dendritic spines of CA 1 pyramidal cells in the rat hippocampus: serial electron microscopy with reference to their biophysical characteristics , 1989, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[117] E. Schuman,et al. Dendrites , 1978, Journal of the Geological Society.
[118] A. Rich,et al. THE NUMBER OF SOLUBLE RNA MOLECULES ON RETICULOCYTE POLYRIBOSOMES. , 1964, Proceedings of the National Academy of Sciences of the United States of America.
[119] A. Rich,et al. A multiple ribosomal structure in protein synthesis. , 1963, Proceedings of the National Academy of Sciences of the United States of America.