scholarly article | Q13442814 |
P356 | DOI | 10.1038/NN.2634 |
P953 | full work available online at | https://europepmc.org/articles/pmc2947576?pdf=render |
https://www.ncbi.nlm.nih.gov/pmc/articles/pmid/20835250/pdf/?tool=EBI | ||
https://www.ncbi.nlm.nih.gov/pmc/articles/pmid/20835250/?tool=EBI | ||
https://europepmc.org/articles/PMC2947576 | ||
http://www.nature.com/articles/nn.2634 | ||
http://www.nature.com/articles/nn.2634.pdf | ||
https://europepmc.org/articles/PMC2947576?pdf=render | ||
P932 | PMC publication ID | 2947576 |
P698 | PubMed publication ID | 20835250 |
P5875 | ResearchGate publication ID | 46220763 |
P50 | author | Chi Wai Lee | Q73587643 |
P2093 | author name string | Gong Chen | |
Xin Tang | |||
Kuai Yu | |||
H. Criss Hartzell | |||
Jiaping Gu | |||
Chicheng Sun | |||
Yanjie Fan | |||
James R. Bamburg | |||
Daniel Komlos | |||
James Q. Zheng | |||
P2860 | cites work | Direct stimulation of receptor-controlled phospholipase D1 by phospho-cofilin | Q24293510 |
AMPA receptor incorporation into synapses during LTP: the role of lateral movement and exocytosis | Q24569654 | ||
Actin in dendritic spines: connecting dynamics to function | Q24611930 | ||
Myosin Vb mobilizes recycling endosomes and AMPA receptors for postsynaptic plasticity | Q24655632 | ||
A monomeric red fluorescent protein | Q28131782 | ||
A role of actin filament in synaptic transmission and long-term potentiation | Q28144564 | ||
Regulation of AMPA receptor channels and synaptic plasticity by cofilin phosphatase Slingshot in cortical neurons | Q28583050 | ||
Receptor trafficking and synaptic plasticity | Q29041960 | ||
Structural basis of long-term potentiation in single dendritic spines | Q29547598 | ||
AMPA receptor trafficking and synaptic plasticity | Q29547876 | ||
Morphological changes in dendritic spines associated with long-term synaptic plasticity | Q29614372 | ||
Shrinkage of dendritic spines associated with long-term depression of hippocampal synapses | Q29615872 | ||
Structure and function of dendritic spines | Q29617057 | ||
AMPA Receptor Trafficking at Excitatory Synapses | Q29617540 | ||
Molecular mechanisms of dendritic spine morphogenesis | Q29903592 | ||
Plasticity-induced growth of dendritic spines by exocytic trafficking from recycling endosomes | Q30479671 | ||
Growth cone-like waves transport actin and promote axonogenesis and neurite branching. | Q30493874 | ||
Learning, AMPA receptor mobility and synaptic plasticity depend on n-cofilin-mediated actin dynamics. | Q30494892 | ||
Regulation of AMPA receptors during synaptic plasticity | Q34155648 | ||
The use of pHluorins for optical measurements of presynaptic activity | Q34174162 | ||
Hippocampal LTP is accompanied by enhanced F-actin content within the dendritic spine that is essential for late LTP maintenance in vivo | Q34196242 | ||
Actin remodeling to facilitate membrane fusion | Q35197991 | ||
LIMK1 and CLIP-115: linking cytoskeletal defects to Williams syndrome | Q35639950 | ||
Dendritic spines and long-term plasticity | Q36085643 | ||
Visualization and molecular analysis of actin assembly in living cells | Q36328583 | ||
Actin in membrane trafficking | Q36872597 | ||
Actin in action: the interplay between the actin cytoskeleton and synaptic efficacy | Q37143121 | ||
Ins and outs of ADF/cofilin activity and regulation | Q37171388 | ||
Different Rho GTPase-dependent signaling pathways initiate sequential steps in the consolidation of long-term potentiation | Q37267709 | ||
Regulation of acetylcholine receptor clustering by ADF/cofilin-directed vesicular trafficking | Q37271224 | ||
ADF/cofilin: a functional node in cell biology | Q37687604 | ||
The cytoskeleton as a barrier to exocytosis in secretory cells | Q39552453 | ||
Actin/alpha-actinin-dependent transport of AMPA receptors in dendritic spines: role of the PDZ-LIM protein RIL. | Q41791750 | ||
Surface mobility of postsynaptic AMPARs tunes synaptic transmission | Q42581248 | ||
Rapid and persistent modulation of actin dynamics regulates postsynaptic reorganization underlying bidirectional plasticity. | Q42825535 | ||
Defining mechanisms of actin polymerization and depolymerization during dendritic spine morphogenesis | Q43107811 | ||
Phosphorylation of cofilin by LIM-kinase is necessary for semaphorin 3A-induced growth cone collapse. | Q45345107 | ||
Changes in synaptic morphology accompany actin signaling during LTP. | Q46438438 | ||
PICK1 and phosphorylation of the glutamate receptor 2 (GluR2) AMPA receptor subunit regulates GluR2 recycling after NMDA receptor-induced internalization. | Q46852190 | ||
Sequential postsynaptic maturation governs the temporal order of GABAergic and glutamatergic synaptogenesis in rat embryonic cultures. | Q46968753 | ||
A calcineurin inhibitor, FK506, blocks voltage-gated calcium channel-dependent LTP in the hippocampus | Q47789008 | ||
Different modes of expression of AMPA and NMDA receptors in hippocampal synapses | Q48160411 | ||
Role of Actin in Anchoring Postsynaptic Receptors in Cultured Hippocampal Neurons: Differential Attachment of NMDA versus AMPA Receptors | Q48493391 | ||
Phosphorylation of actin-depolymerizing factor/cofilin by LIM-kinase mediates amyloid beta-induced degeneration: a potential mechanism of neuronal dystrophy in Alzheimer's disease. | Q48496690 | ||
Abnormal spine morphology and enhanced LTP in LIMK-1 knockout mice | Q48545185 | ||
Lateral diffusion drives constitutive exchange of AMPA receptors at dendritic spines and is regulated by spine morphology. | Q50725129 | ||
Novel form of long-term potentiation produced by a K+ channel blocker in the hippocampus. | Q52101219 | ||
Jasplakinolide, a cytotoxic natural product, induces actin polymerization and competitively inhibits the binding of phalloidin to F-actin. | Q52543658 | ||
Latrunculins: novel marine toxins that disrupt microfilament organization in cultured cells | Q57258304 | ||
Spatial organization of cofilin in dendritic spines | Q82149607 | ||
P4510 | describes a project that uses | ImageJ | Q1659584 |
P433 | issue | 10 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | synaptic plasticity | Q1551556 |
P304 | page(s) | 1208-1215 | |
P577 | publication date | 2010-09-12 | |
P1433 | published in | Nature Neuroscience | Q1535359 |
P1476 | title | ADF/cofilin-mediated actin dynamics regulate AMPA receptor trafficking during synaptic plasticity | |
P478 | volume | 13 |
Q35082547 | A genetically encoded reporter for real-time imaging of cofilin-actin rods in living neurons |
Q43671370 | ADF/Cofilin Controls Synaptic Actin Dynamics and Regulates Synaptic Vesicle Mobilization and Exocytosis |
Q38513796 | ADF/cofilin: a crucial regulator of synapse physiology and behavior |
Q34785637 | AMPA receptor subunit GluR1 (GluA1) serine-845 site is involved in synaptic depression but not in spine shrinkage associated with chemical long-term depression. |
Q47587415 | Aberrant Rac1-cofilin signaling mediates defects in dendritic spines, synaptic function, and sensory perception in fragile X syndrome. |
Q36864524 | Actin Mediates the Nanoscale Membrane Organization of the Clustered Membrane Protein Influenza Hemagglutinin |
Q36323398 | Actin Out: Regulation of the Synaptic Cytoskeleton |
Q57141134 | Actin blobs prefigure dendrite branching sites |
Q35110640 | Actin capping protein is required for dendritic spine development and synapse formation. |
Q38823715 | Actin cytoskeleton in dendritic spine development and plasticity. |
Q38731927 | Actin dynamics and cofilin-actin rods in alzheimer disease |
Q38271944 | Actin-dependent mechanisms in AMPA receptor trafficking |
Q64060265 | Activated cofilin exacerbates tau pathology by impairing tau-mediated microtubule dynamics |
Q28566431 | Activity-dependent dendritic spine shrinkage and growth involve downregulation of cofilin via distinct mechanisms |
Q36661665 | Activity-dependent spine morphogenesis: a role for the actin-capping protein Eps8 |
Q34567280 | Amyloid beta dimers/trimers potently induce cofilin-actin rods that are inhibited by maintaining cofilin-phosphorylation |
Q88499556 | Amyloid fibrils induce dysfunction of hippocampal glutamatergic silent synapses |
Q27335309 | Amyloid-β and proinflammatory cytokines utilize a prion protein-dependent pathway to activate NADPH oxidase and induce cofilin-actin rods in hippocampal neurons |
Q47287703 | Aβ mediates F-actin disassembly in dendritic spines leading to cognitive deficits in Alzheimer's disease. |
Q47150601 | BDNF/trkB Induction of Calcium Transients through Cav2.2 Calcium Channels in Motoneurons Corresponds to F-actin Assembly and Growth Cone Formation on β2-Chain Laminin (221). |
Q42369635 | Beta-arrestin 1 regulation of reward-motivated behaviors and glutamatergic function |
Q38443141 | Biochemical Computation for Spine Structural Plasticity |
Q89186404 | Brain ischemic insult induces cofilin rod formation leading to synaptic dysfunction in neurons |
Q37915439 | Casting a net on dendritic spines: The extracellular matrix and its receptors |
Q124094957 | Chemical Stimulation of Rodent and Human Cortical Synaptosomes: Implications in Neurodegeneration |
Q37495863 | Circadian glucocorticoid oscillations promote learning-dependent synapse formation and maintenance |
Q39384217 | Clathrin-independent trafficking of AMPA receptors. |
Q35763182 | Cofilin Aggregation Blocks Intracellular Trafficking and Induces Synaptic Loss in Hippocampal Neurons |
Q38670273 | Cofilin as a Promising Therapeutic Target for Ischemic and Hemorrhagic Stroke |
Q30505951 | Cofilin under control of β-arrestin-2 in NMDA-dependent dendritic spine plasticity, long-term depression (LTD), and learning |
Q28581834 | Cofilin1 controls transcolumnar plasticity in dendritic spines in adult barrel cortex |
Q33752104 | Comparison of the adolescent and adult mouse prefrontal cortex proteome |
Q26753846 | Control of Dendritic Spine Morphological and Functional Plasticity by Small GTPases |
Q30412593 | Critical role of inflammatory cytokines in impairing biochemical processes for learning and memory after surgery in rats |
Q43713431 | Cyclosporine A protects podocytes via stabilization of cofilin-1 expression in the unphosphorylated state |
Q50606640 | Cytoskeleton-Associated Risk Modifiers Involved in Early and Rapid Progression of Sporadic Creutzfeldt-Jakob Disease |
Q37981628 | Deconstructing signal transduction pathways that regulate the actin cytoskeleton in dendritic spines |
Q48235278 | Deficiency of Cks1 Leads to Learning and Long-Term Memory Defects and p27 Dependent Formation of Neuronal Cofilin Aggregates. |
Q89529457 | Dendritic Spines in Alzheimer's Disease: How the Actin Cytoskeleton Contributes to Synaptic Failure |
Q37190403 | Dephosphorylation and mitochondrial translocation of cofilin sensitizes human leukemia cells to cerulenin-induced apoptosis via the ROCK1/Akt/JNK signaling pathway |
Q38028275 | Differences between synaptic plasticity thresholds result in new timing rules for maximizing long-term potentiation |
Q35595040 | Differences in brain gene transcription profiles advocate for an important role of cognitive function in upstream migration and water obstacles crossing in European eel. |
Q30833268 | Direct dorsal hippocampal-prelimbic cortex connections strengthen fear memories |
Q39305754 | EFhd2/Swiprosin-1 is a common genetic determinator for sensation-seeking/low anxiety and alcohol addiction. |
Q34288592 | Early, nonciliary role for microtubule proteins in left-right patterning is conserved across kingdoms |
Q50601557 | Effects of Hippocampal LIMK Inhibition on Memory Acquisition, Consolidation, Retrieval, Reconsolidation, and Extinction. |
Q35842055 | EphA Signaling Promotes Actin-based Dendritic Spine Remodeling through Slingshot Phosphatase |
Q41725130 | EphB2 in the Medial Prefrontal Cortex Regulates Vulnerability to Stress |
Q35755952 | Estrogen promotes learning-related plasticity by modifying the synaptic cytoskeleton |
Q35677187 | Estrous Cycle-Dependent Phasic Changes in the Stoichiometry of Hippocampal Synaptic AMPA Receptors in Rats |
Q38033377 | Functional Diversity of Actin Cytoskeleton in Neurons and its Regulation by Tropomyosin |
Q38115453 | Functions of cofilin in cell locomotion and invasion. |
Q37604336 | Galanin stimulates neurite outgrowth from sensory neurons by inhibition of Cdc42 and Rho GTPases and activation of cofilin |
Q35120295 | Glucocorticoid Mechanisms of Functional Connectivity Changes in Stress-Related Neuropsychiatric Disorders |
Q48331367 | Glucocorticoid suppresses dendritic spine development mediated by down-regulation of caldesmon expression |
Q30389421 | Glutamate transporter type 3 regulates mouse hippocampal GluR1 trafficking |
Q35870286 | Growth cone travel in space and time: the cellular ensemble of cytoskeleton, adhesion, and membrane. |
Q57035772 | HHIV Associated Neurodegenerative Disorders: A New Perspective on the Role of Lipid Rafts in Gp120-Mediated Neurotoxicity |
Q42544345 | Hippocampal Dendritic Spines Are Segregated Depending on Their Actin Polymerization. |
Q50418397 | Impaired Object Recognition but Normal Social Behavior and Ultrasonic Communication in Cofilin1 Mutant Mice |
Q48494174 | In vivo and in vitro effects of vortioxetine on molecules associated with neuroplasticity |
Q41605680 | Increased Hippocampal ProBDNF Contributes to Memory Impairments in Aged Mice |
Q26863428 | Insights into rapid modulation of neuroplasticity by brain estrogens |
Q37987803 | Interacting Partners of AMPA-Type Glutamate Receptors |
Q48094985 | KCC2 Gates Activity-Driven AMPA Receptor Traffic through Cofilin Phosphorylation. |
Q27013872 | Lateral organization of the postsynaptic density |
Q88571087 | Mechanisms underlying the rapid effects of estradiol and progesterone on hippocampal memory consolidation in female rodents |
Q36514088 | Microdomains in Forebrain Spines: an Ultrastructural Perspective |
Q35176451 | Mitochondrial translocation and interaction of cofilin and Drp1 are required for erucin-induced mitochondrial fission and apoptosis |
Q88227478 | Molecular mechanisms underlying striatal synaptic plasticity: relevance to chronic alcohol consumption and seeking |
Q36354507 | Morphological and molecular changes in aging rat prelimbic prefrontal cortical synapses |
Q44024416 | Mutation of neuron-specific chromatin remodeling subunit BAF53b: rescue of plasticity and memory by manipulating actin remodeling. |
Q36283307 | Myosin IIb-dependent Regulation of Actin Dynamics Is Required for N-Methyl-D-aspartate Receptor Trafficking during Synaptic Plasticity |
Q88111669 | Myosin Id localizes in dendritic spines through the tail homology 1 domain |
Q28477697 | N-cofilin can compensate for the loss of ADF in excitatory synapses |
Q41712150 | Nanoscale segregation of actin nucleation and elongation factors determines dendritic spine protrusion. |
Q37417763 | Neonatal isolation augments social dominance by altering actin dynamics in the medial prefrontal cortex. |
Q36583305 | Neuroligin 1 regulates spines and synaptic plasticity via LIMK1/cofilin-mediated actin reorganization. |
Q36368787 | Nogo Receptor Signaling Restricts Adult Neural Plasticity by Limiting Synaptic AMPA Receptor Delivery |
Q39776871 | Nogo-66 Restricts Synaptic Strengthening via Lingo1 and the ROCK2-Cofilin Pathway to Control Actin Dynamics. |
Q40126140 | Nogo-A controls structural plasticity at dendritic spines by rapidly modulating actin dynamics. |
Q39328373 | Novel functions for ADF/cofilin in excitatory synapses - lessons from gene-targeted mice |
Q90369488 | Novel synaptic plasticity enhancer drug to augment functional recovery with rehabilitation |
Q54112233 | Oligodendrocyte-specific loss of Cdk5 disrupts the architecture of nodes of Ranvier as well as learning and memory |
Q38993097 | Optogenetic Control of Synaptic Composition and Function |
Q38815063 | Organization and dynamics of the actin cytoskeleton during dendritic spine morphological remodeling |
Q27329999 | Orofacial Neuropathic Pain Leads to a Hyporesponsive Barrel Cortex with Enhanced Structural Synaptic Plasticity |
Q42472807 | PKC enhances the capacity for secretion by rapidly recruiting covert voltage-gated Ca2+ channels to the membrane |
Q97520122 | Palmitoylated Proteins in Dendritic Spine Remodeling |
Q35599200 | Palmitoylation of LIM Kinase-1 ensures spine-specific actin polymerization and morphological plasticity |
Q48643304 | Partial Amelioration of Synaptic and Cognitive Deficits by Inhibiting Cofilin Dephosphorylation in an Animal Model of Alzheimer's Disease |
Q24610600 | Pathogenic SYNGAP1 mutations impair cognitive development by disrupting maturation of dendritic spine synapses |
Q39148389 | Peptide regulation of cofilin activity in the CNS: A novel therapeutic approach for treatment of multiple neurological disorders |
Q47977382 | Phosphoinositide-dependent enrichment of actin monomers in dendritic spines regulates synapse development and plasticity. |
Q48088082 | Phosphorylation of Cofilin Regulates Extinction of Conditioned Aversive Memory via AMPAR Trafficking |
Q38161568 | Plasticity of dendritic spines: subcompartmentalization of signaling. |
Q37479485 | Postsynaptic GABAB receptor activity regulates excitatory neuronal architecture and spatial memory |
Q37642431 | Prelimbic cortex and ventral tegmental area modulate synaptic plasticity differentially in nucleus accumbens during cocaine-reinstated drug seeking |
Q47796174 | Propofol-induced age-different hypocampal long-term potentiation is associated with F-actin polymerization in rats. |
Q47815103 | Proteomic analysis of time-dependent changes in proteins expressed in mouse hippocampus during synaptic plasticity induced by GABAA receptor blockade |
Q42227437 | RanBP9 at the intersection between cofilin and Aβ pathologies: rescue of neurodegenerative changes by RanBP9 reduction |
Q35105231 | Rapid increase in clusters of synaptophysin at onset of homosynaptic potentiation in Aplysia |
Q64230368 | Reciprocal Regulation of KCC2 Trafficking and Synaptic Activity |
Q42102539 | Reelin Exerts Structural, Biochemical and Transcriptional Regulation Over Presynaptic and Postsynaptic Elements in the Adult Hippocampus |
Q26748973 | Regulation of the Postsynaptic Compartment of Excitatory Synapses by the Actin Cytoskeleton in Health and Its Disruption in Disease |
Q36747983 | Relapse induced by cues predicting cocaine depends on rapid, transient synaptic potentiation |
Q36528090 | Role of Phosphoinositides at the Neuronal Synapse |
Q38627246 | Roles of LIM kinases in central nervous system function and dysfunction |
Q28580597 | SPIN90 dephosphorylation is required for cofilin-mediated actin depolymerization in NMDA-stimulated hippocampal neurons |
Q89723060 | Serotonin 5-HT4 receptor boosts functional maturation of dendritic spines via RhoA-dependent control of F-actin |
Q38059941 | Signaling mechanisms and functional roles of cofilin phosphorylation and dephosphorylation |
Q35195400 | Signalling pathways underlying structural plasticity of dendritic spines |
Q30648652 | Slingshot-Cofilin activation mediates mitochondrial and synaptic dysfunction via Aβ ligation to β1-integrin conformers |
Q41437144 | Social isolation suppresses actin dynamics and synaptic plasticity through ADF/cofilin inactivation in the developing rat barrel cortex. |
Q28534456 | Soluble ICAM-5, a product of activity dependent proteolysis, increases mEPSC frequency and dendritic expression of GluA1 |
Q28579266 | Stimuli associated with the presence or absence of amphetamine regulate cytoskeletal signaling and behavior |
Q28573964 | Stress‐induced sensitization to cocaine: actin cytoskeleton remodeling within mesocorticolimbic nuclei |
Q34798295 | Structural and molecular remodeling of dendritic spine substructures during long-term potentiation. |
Q27002957 | Structural plasticity of dendritic spines |
Q36680385 | Subsynaptic AMPA Receptor Distribution Is Acutely Regulated by Actin-Driven Reorganization of the Postsynaptic Density |
Q37986657 | Surface Traffic in Synaptic Membranes |
Q57810658 | Synaptotoxicity in Alzheimer's disease involved a dysregulation of actin cytoskeleton dynamics through cofilin 1 phosphorylation |
Q42136393 | TPM3 and TPM4 gene products segregate to the postsynaptic region of central nervous system synapses. |
Q40368537 | Temporal Dynamics of Acute Stress-Induced Dendritic Remodeling in Medial Prefrontal Cortex and the Protective Effect of Desipramine. |
Q36421459 | The Notch ligand E3 ligase, Mind Bomb1, regulates glutamate receptor localization in Drosophila. |
Q85712638 | The Role of Slingshot-1L (SSH1L) in the Differentiation of Human Bone Marrow Mesenchymal Stem Cells into Cardiomyocyte-Like Cells |
Q30474641 | The Roles of the Actin Cytoskeleton in Fear Memory Formation |
Q47689634 | The Small GTPase Rac1 Contributes to Extinction of Aversive Memories of Drug Withdrawal by Facilitating GABAA Receptor Endocytosis in the vmPFC. |
Q28572147 | The autism and schizophrenia associated gene CYFIP1 is critical for the maintenance of dendritic complexity and the stabilization of mature spines |
Q27316421 | The calcium sensor Copine-6 regulates spine structural plasticity and learning and memory |
Q38001421 | The dynamic role of bone morphogenetic proteins in neural stem cell fate and maturation. |
Q47880463 | The impact of cytoskeletal organization on the local regulation of neuronal transport. |
Q34528594 | The importance of the excitatory amino acid transporter 3 (EAAT3) |
Q37271653 | The interplay between neuronal activity and actin dynamics mimic the setting of an LTD synaptic tag |
Q91995807 | The p75 Neurotrophin Receptor Is an Essential Mediator of Impairments in Hippocampal-Dependent Associative Plasticity and Memory Induced by Sleep Deprivation |
Q93047762 | The role of cofilin in age-related neuroinflammation |
Q38960458 | The role of drebrin in neurons |
Q38220785 | The role of phosphoinositides in synapse function |
Q38592069 | Translation of Pre-Clinical Studies into Successful Clinical Trials for Alzheimer's Disease: What are the Roadblocks and How Can They Be Overcome? |
Q28547569 | Two-Photon Correlation Spectroscopy in Single Dendritic Spines Reveals Fast Actin Filament Reorganization during Activity-Dependent Growth |
Q47978175 | Vezatin is essential for dendritic spine morphogenesis and functional synaptic maturation |
Q41378038 | mTORC1-S6K1 inhibition or mTORC2 activation improves hippocampal synaptic plasticity and learning in Angelman syndrome mice |
Q41282699 | β-adrenergic signaling broadly contributes to LTP induction. |
Search more.