review article | Q7318358 |
scholarly article | Q13442814 |
P50 | author | Thomas Jessell | Q2425113 |
Eric Kandel | Q155529 | ||
P2860 | cites work | A gene deleted in Kallmann's syndrome shares homology with neural cell adhesion and axonal path-finding molecules | Q24311797 |
Neuropoietic cytokines in the hematopoietic fold | Q24322963 | ||
Neurexins: synaptic cell surface proteins related to the alpha-latrotoxin receptor and laminin | Q24337780 | ||
Impaired long-term potentiation, spatial learning, and hippocampal development in fyn mutant mice | Q24338349 | ||
Long-lasting potentiation of synaptic transmission in the dentate area of the anaesthetized rabbit following stimulation of the perforant path | Q24538964 | ||
The candidate gene for the X-linked Kallmann syndrome encodes a protein related to adhesion molecules | Q28118633 | ||
Deficient hippocampal long-term potentiation in alpha-calcium-calmodulin kinase II mutant mice | Q28187682 | ||
CNTF and LIF act on neuronal cells via shared signaling pathways that involve the IL-6 signal transducing receptor component gp130 | Q28273498 | ||
A novel multigene family may encode odorant receptors: a molecular basis for odor recognition | Q28276183 | ||
Structure and expression of a rat agrin | Q28281895 | ||
Expression cloning of an activin receptor, a predicted transmembrane serine kinase | Q28295810 | ||
Nitric oxide release accounts for the biological activity of endothelium-derived relaxing factor | Q28299224 | ||
Synapsins: mosaics of shared and individual domains in a family of synaptic vesicle phosphoproteins | Q28574559 | ||
A Functional Connection Between the Pores of Distantly Related Ion Channels as Revealed by Mutant K + Channels | Q49161635 | ||
Mutations in the channel domain of a neuronal nicotinic receptor convert ion selectivity from cationic to anionic. | Q50789819 | ||
Serotonin-mediated endocytosis of apCAM: an early step of learning-related synaptic growth in Aplysia. | Q52231656 | ||
Developmental changes in the neurotransmitter properties of dissociated sympathetic neurons: a cytochemical study of the effects of medium. | Q52298065 | ||
Regulation by synapsin I and Ca(2+)-calmodulin-dependent protein kinase II of the transmitter release in squid giant synapse. | Q52451303 | ||
Mice develop normally without tenascin | Q52477879 | ||
Endothelium-derived relaxing factor release on activation of NMDA receptors suggests role as intercellular messenger in the brain | Q59062956 | ||
Ion channel structure and function | Q67544064 | ||
Membrane fusion | Q67584890 | ||
An analysis of the end-plate potential recorded with an intracellular electrode | Q75949491 | ||
EXCITATION AND CONDUCTION IN NERVE: QUANTITATIVE ANALYSIS | Q76859243 | ||
Sex, nose and genotype | Q80505997 | ||
Hunting for the pore of voltage-gated channels | Q80506057 | ||
Can genes be truly redundant? | Q80506132 | ||
The obligatory role of endothelial cells in the relaxation of arterial smooth muscle by acetylcholine | Q29547539 | ||
Memory and the hippocampus: a synthesis from findings with rats, monkeys, and humans | Q29615991 | ||
Tetanus and botulinum-B neurotoxins block neurotransmitter release by proteolytic cleavage of synaptobrevin | Q29619130 | ||
Cadherin cell adhesion receptors as a morphogenetic regulator | Q29620503 | ||
UNC-5, a transmembrane protein with immunoglobulin and thrombospondin type 1 domains, guides cell and pioneer axon migrations in C. elegans | Q30195245 | ||
Strategic location of calcium channels at transmitter release sites of frog neuromuscular synapses | Q33508349 | ||
Molecular biology of visual pigments | Q34183471 | ||
Aberrant splicing of neural cell adhesion molecule L1 mRNA in a family with X-linked hydrocephalus | Q34231838 | ||
Cellular and molecular biology of voltage-gated sodium channels | Q34238906 | ||
Mechanism of nerve-impulse transmission at a crayfish synapse | Q34241903 | ||
Acetylcholine receptor channel structure probed in cysteine-substitution mutants. | Q34250941 | ||
Molecular cloning and characterization of the rat NMDA receptor | Q34762781 | ||
Gap junctions: new tools, new answers, new questions | Q34778703 | ||
Voltage-dependent ion channels and their gating | Q35149794 | ||
Diversity of axonal growth-promoting receptors and regulation of their function | Q35230860 | ||
Nitric oxide, a novel neuronal messenger | Q35308679 | ||
Nobel lecture. Ion channels for communication between and within cells | Q35314888 | ||
Nobel Lecture. Elementary steps in synaptic transmission revealed by currents through single ion channels | Q35314907 | ||
Motors for fast axonal transport | Q35344087 | ||
Neuronal cytoskeleton and growth | Q35469402 | ||
Molecular biology of voltage-dependent potassium channels | Q35531479 | ||
Cloning and sequence analysis of cDNA encoding p38, a major synaptic vesicle protein | Q36217265 | ||
Mesodermal control of neural cell identity in vertebrates | Q36354905 | ||
Repellent cues in axon guidance | Q36354928 | ||
Proteins of synaptic vesicles involved in exocytosis and membrane recycling | Q36494085 | ||
Microtubule behavior during guidance of pioneer neuron growth cones in situ | Q36530311 | ||
Microtubule behavior in the growth cones of living neurons during axon elongation | Q36530386 | ||
Different extracellular domains of the neural cell adhesion molecule (N-CAM) are involved in different functions | Q36531563 | ||
Neuronal cell adhesion molecule contactin/F11 binds to tenascin via its immunoglobulin-like domains | Q36531957 | ||
Target attraction: are developing axons guided by chemotropism? | Q36695793 | ||
Contact and adhesive specificities in the associations, migrations, and targeting of cells and axons | Q36750000 | ||
Cell adhesion molecules and their subgroups in the nervous system | Q37064027 | ||
Molecular architecture of the nerve terminal | Q37064031 | ||
Molecular motors in the nervous system | Q37110065 | ||
Extracellular matrix molecules and their receptors: functions in neural development | Q37178903 | ||
Cellular and Molecular Biology of the Presynaptic Nerve Terminal | Q37178908 | ||
Mechanisms of complex transcriptional regulation: implications for brain development | Q37253166 | ||
Transmitter release from synapses: does a preassembled fusion pore initiate exocytosis? | Q37591531 | ||
The synapsins | Q37608539 | ||
Neuronal intermediate filaments | Q37811586 | ||
Patterned activity, synaptic convergence, and the NMDA receptor in developing visual pathways | Q37916245 | ||
Signal sorting and amplification through G protein-coupled receptors | Q38325349 | ||
Cellular and molecular biology of neuropeptide processing and packaging | Q38772879 | ||
Axon guidance and the patterning of neuronal projections in vertebrates | Q38974912 | ||
The current excitement in long-term potentiation | Q39340091 | ||
Adhesion molecules and the hierarchy of neural development | Q39584231 | ||
Cell adhesion molecules in the regulation of animal form and tissue pattern | Q39760631 | ||
Neurotransmitter action: Opening of ligand-gated ion channels | Q40484741 | ||
Storage and release of neurotransmitters | Q40708080 | ||
Quantal release of neurotransmitter and long-term potentiation | Q40708084 | ||
Molecular machines integrate coincident synaptic signals | Q40708090 | ||
Neuronal differentiation factors/cytokines and synaptic plasticity | Q40873394 | ||
Synaptic circuitry of the retina and olfactory bulb | Q40873401 | ||
Developmental mechanisms that generate precise patterns of neuronal connectivity | Q40873406 | ||
Synaptic structure and development: the neuromuscular junction | Q40873412 | ||
New life in an old structure: the development of synaptic pathways in the spinal cord | Q40886584 | ||
Agrin released by motor neurons induces the aggregation of acetylcholine receptors at neuromuscular junctions. | Q41083959 | ||
NMDA receptor agonist and antagonists alter retinal ganglion cell arbor structure in the developing frog retinotectal projection | Q41199665 | ||
The regulation of intramuscular nerve branching during normal development and following activity blockade | Q41375885 | ||
Receptive fields in the body-surface map in adult cortex defined by temporally correlated inputs | Q41435078 | ||
Synaptophysin binds to physophilin, a putative synaptic plasma membrane protein | Q42015278 | ||
RNA splicing regulates agrin-mediated acetylcholine receptor clustering activity on cultured myotubes | Q42451366 | ||
Pioneer growth cone steering decisions mediated by single filopodial contacts in situ. | Q42482885 | ||
Functional significance of aromatic amino acids from three peptide loops of the alpha 7 neuronal nicotinic receptor site investigated by site-directed mutagenesis | Q42618667 | ||
Positive feedback of glutamate exocytosis by metabotropic presynaptic receptor stimulation | Q43424561 | ||
Rings of negatively charged amino acids determine the acetylcholine receptor channel conductance | Q43509560 | ||
Evidence that the M2 membrane-spanning region lines the ion channel pore of the nicotinic receptor | Q43866558 | ||
Identification of synaptophysin as a hexameric channel protein of the synaptic vesicle membrane | Q44802556 | ||
Hippocampal long-term potentiation is induced by pairing single afferent volleys with intracellularly injected depolarizing current pulses | Q44953873 | ||
Antibodies to synaptophysin interfere with transmitter secretion at neuromuscular synapses | Q45058292 | ||
Genetic analysis of growth cone guidance in Drosophila: fasciclin II functions as a neuronal recognition molecule | Q45086467 | ||
Role of an N-ethylmaleimide-sensitive transport component in promoting fusion of transport vesicles with cisternae of the Golgi stack | Q46341560 | ||
Long-term potentiation in the hippocampus is blocked by tyrosine kinase inhibitors | Q46786662 | ||
UNC-6, a laminin-related protein, guides cell and pioneer axon migrations in C. elegans | Q48151727 | ||
Synaptic vesicle-associated Ca2+/calmodulin-dependent protein kinase II is a binding protein for synapsin I | Q48428785 | ||
Calcium-dependent transmitter secretion reconstituted in Xenopus oocytes: requirement for synaptophysin | Q48453915 | ||
Eye-specific segregation requires neural activity in three-eyed Rana pipiens. | Q48493188 | ||
Calcium channel characteristics conferred on the sodium channel by single mutations | Q48494145 | ||
Axon Guidance by Gradients of a Target-Derived Component | Q48546224 | ||
A Requirement for the Intercellular Messenger Nitric Oxide in Long-Term Potentiation | Q48611776 | ||
Nitric oxide synthase protein and mRNA are discretely localized in neuronal populations of the mammalian CNS together with NADPH diaphorase | Q48650129 | ||
Possible involvement of nitric oxide in long-term potentiation | Q48690459 | ||
P407 | language of work or name | English | Q1860 |
P304 | page(s) | 1-30 | |
P577 | publication date | 1993-01-01 | |
P1433 | published in | Cell | Q655814 |
P1476 | title | Synaptic transmission: a bidirectional and self-modifiable form of cell-cell communication | |
P478 | volume | 72 Suppl |
Q34808797 | "Latent" inhibitory connections become functional during activity-dependent plasticity |
Q44563705 | 17 beta-Estradiol enhances the outgrowth and survival of neocortical neurons in culture |
Q34040307 | A single tryptophan on M2 of glutamate receptor channels confers high permeability to divalent cations |
Q30830191 | Activity flow over resting-state networks shapes cognitive task activations |
Q24310712 | An Akt/beta-arrestin 2/PP2A signaling complex mediates dopaminergic neurotransmission and behavior |
Q28506753 | Anatomical transcriptome of G protein-coupled receptors leads to the identification of a novel therapeutic candidate GPR52 for psychiatric disorders |
Q41907686 | Bacterially expressed F1‐20/AP‐3 assembles clathrin into cages with a narrow size distribution: Implications for the regulation of quantal size during neurotransmission |
Q36813712 | Build to understand: synthetic approaches to biology |
Q42160637 | Ca(2+)-independent fusion of secretory granules with phospholipase A2-treated plasma membranes in vitro |
Q42160004 | Ca(2+)-independent fusion of synaptic vesicles with phospholipase A2-treated presynaptic membranes in vitro |
Q40882692 | Centenary of the synapse: from Sherrington to the molecular biology of the synapse and beyond |
Q56593456 | Chapter 9 Mechanisms involved in development of retinotectal connections: Roles of Eph receptor tyrosine kinases, NMDA receptors and nitric oxide |
Q48048332 | Chick ciliary ganglion neurons contain transcripts coding for acetylcholine receptor-associated protein at synapses (rapsyn). |
Q34297685 | Clostridial neurotoxins compromise the stability of a low energy SNARE complex mediating NSF activation of synaptic vesicle fusion |
Q48160984 | Co-expression in Xenopus neurons and neuroendocrine cells of messenger RNA homologues of exocytosis proteins DOC2 and munc18-1. |
Q48726970 | Co-localization of androgen receptor and nitric oxide synthase in the ventral premammillary nucleus of the newborn rat: an immunohistochemical study |
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Q46429053 | Concomitant protein phosphorylation and endogenous acetylcholine release induced by nicotine: dependency on neuronal nicotinic receptors and desensitization |
Q42546587 | Concurrent administration of thyroxine and donepezil induces plastic changes in the prefrontal cortex of adult hypothyroid rats |
Q28117673 | Connexin-26 mutations in sporadic and inherited sensorineural deafness |
Q41916037 | Dephosphorylated synapsin I anchors synaptic vesicles to actin cytoskeleton: an analysis by videomicroscopy. |
Q40775153 | Development of Meissner-like and Pacinian sensory corpuscles in the mouse demonstrated with specific markers for corpuscular constituents |
Q46872970 | Developmental pattern of NADPH-diaphorase positive neurons in chick optic tectum is sensitive to changes in visual stimulation |
Q52024628 | Distribution, density, and clustering of functional glutamate receptors before and after synaptogenesis in hippocampal neurons. |
Q33961860 | Dominant unc-37 mutations suppress the movement defect of a homeodomain mutation in unc-4, a neural specificity gene in Caenorhabditis elegans. |
Q47566777 | Effect of Dimerization on the Dynamics of Neurotransmitter:Sodium Symporters. |
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Q42469868 | Effects of retinoic acid on rat forebrain cells derived from embryonic and perinatal rats |
Q36326990 | Energy landscape of LeuT from molecular simulations |
Q34240652 | Factors controlling axonal and dendritic arbors |
Q41652257 | Genetic dissection of synaptic transmission in Drosophila |
Q50421340 | Hippocampal MicroRNAs Respond to Administration of Antidepressant Fluoxetine in Adult Mice. |
Q52548085 | Homeostasis of synaptic transmission in Drosophila with genetically altered nerve terminal morphology. |
Q36125047 | Homotypic receptor-receptor interactions regulating Eph signaling |
Q26866308 | How LeuT shapes our understanding of the mechanisms of sodium-coupled neurotransmitter transporters |
Q24309659 | Human postsynaptic density-95 (PSD95): location of the gene (DLG4) and possible function in nonneural as well as in neural tissues |
Q36689650 | Identification of two highly homologous presynaptic proteins distinctly localized at the dendritic and somatic synapses. |
Q48620953 | In vitro synaptogenesis between the somata of identified Lymnaea neurons requires protein synthesis but not extrinsic growth factors or substrate adhesion molecules. |
Q52087890 | Influence of visual experience on developmental shift from long-term depression to long-term potentiation in the rat medial vestibular nuclei. |
Q40569991 | Injury-related behavior and neuronal plasticity: an evolutionary perspective on sensitization, hyperalgesia, and analgesia. |
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Q34114394 | Maturation of channels and receptors: consequences for excitability |
Q34995058 | Mechanisms of GABAA receptor assembly and trafficking: implications for the modulation of inhibitory neurotransmission. |
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Q40642444 | Molecular mechanisms of clostridial neurotoxins |
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Q40504200 | Nicotine-related brain disorders: the neurobiological basis of nicotine dependence |
Q28594518 | Nigrostriatal innervation is preserved in Nurr1-null mice, although dopaminergic neuron precursors are arrested from terminal differentiation |
Q48680100 | Nitric oxide depolarizes type II paraventricular nucleus neurons in vitro. |
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