scholarly article | Q13442814 |
P356 | DOI | 10.15252/EMBJ.201591125 |
P8608 | Fatcat ID | release_msjs43t3zvdvxlrreusmt5rwfe |
P932 | PMC publication ID | 4551352 |
P698 | PubMed publication ID | 26108535 |
P2093 | author name string | Zu-Hang Sheng | |
Jerome Di Giovanni | |||
P2860 | cites work | Snapin: a SNARE-associated protein implicated in synaptic transmission | Q22009155 |
The schizophrenia susceptibility factor dysbindin and its associated complex sort cargoes from cell bodies to the synapse | Q24293250 | ||
Assembly and architecture of biogenesis of lysosome-related organelles complex-1 (BLOC-1). | Q24300804 | ||
Developmental refinement of vesicle cycling at Schaffer collateral synapses | Q45210560 | ||
Blocking endocytosis enhances short-term synaptic depression under conditions of normal availability of vesicles | Q46227771 | ||
Reluctant vesicles contribute to the total readily releasable pool in glutamatergic hippocampal neurons. | Q46437156 | ||
Quantitative ultrastructural analysis of hippocampal excitatory synapses. | Q46681133 | ||
Nanodomain coupling between Ca2+ channels and Ca2+ sensors promotes fast and efficient transmitter release at a cortical GABAergic synapse | Q46730437 | ||
Constitutive sharing of recycling synaptic vesicles between presynaptic boutons | Q46931398 | ||
Endocytic structures and synaptic vesicle recycling at a central synapse in awake rats | Q48378968 | ||
Dysbindin deficiency in sandy mice causes reduction of snapin and displays behaviors related to schizophrenia | Q48935967 | ||
Snapin accelerates exocytosis at low intracellular calcium concentration in mouse chromaffin cells. | Q50946466 | ||
The neural cell adhesion molecule promotes maturation of the presynaptic endocytotic machinery by switching synaptic vesicle recycling from adaptor protein 3 (AP-3)- to AP-2-dependent mechanisms. | Q51751503 | ||
Effects of PKA-mediated phosphorylation of Snapin on synaptic transmission in cultured hippocampal neurons. | Q54504919 | ||
Synaptotagmin has an essential function in synaptic vesicle positioning for synchronous release in addition to its role as a calcium sensor | Q64375154 | ||
Inhibition of neurotransmission by peptides containing the synaptic protein interaction site of N-type Ca2+ channels | Q71728596 | ||
Presynaptic enhancement of inhibitory synaptic transmission by protein kinases A and C in the rat hippocampus in vitro | Q72575533 | ||
Alterations in transmission, vesicle dynamics, and transmitter release machinery at NCAM-deficient neuromuscular junctions | Q77334872 | ||
Dysbindin-1 is a synaptic and microtubular protein that binds brain snapin | Q24303507 | ||
Identification of snapin and three novel proteins (BLOS1, BLOS2, and BLOS3/reduced pigmentation) as subunits of biogenesis of lysosome-related organelles complex-1 (BLOC-1) | Q24337584 | ||
BLOC-1 is required for cargo-specific sorting from vacuolar early endosomes toward lysosome-related organelles | Q24337651 | ||
Genetic variation in the 6p22.3 gene DTNBP1, the human ortholog of the mouse dysbindin gene, is associated with schizophrenia | Q24612644 | ||
The schizophrenia susceptibility gene dysbindin controls synaptic homeostasis | Q24632783 | ||
Neurotransmitter release: the last millisecond in the life of a synaptic vesicle | Q26269845 | ||
RIM determines Ca²+ channel density and vesicle docking at the presynaptic active zone | Q26269881 | ||
RIM proteins tether Ca2+ channels to presynaptic active zones via a direct PDZ-domain interaction | Q26269921 | ||
Synaptic vesicle recycling: steps and principles | Q26825177 | ||
Axonal autophagosomes recruit dynein for retrograde transport through fusion with late endosomes | Q27310389 | ||
BORC, a multisubunit complex that regulates lysosome positioning. | Q27314810 | ||
The BLOC-1 complex promotes endosomal maturation by recruiting the Rab5 GTPase-activating protein Msb3. | Q27940067 | ||
Phosphorylation of Snapin by PKA modulates its interaction with the SNARE complex | Q28210000 | ||
Regulation of synaptophysin degradation by mammalian homologues of seven in absentia | Q28215219 | ||
Molecular anatomy of a trafficking organelle | Q28274481 | ||
SCRAPPER-dependent ubiquitination of active zone protein RIM1 regulates synaptic vesicle release | Q28505380 | ||
Snapin facilitates the synchronization of synaptic vesicle fusion | Q28508747 | ||
Hermansky-Pudlak protein complexes, AP-3 and BLOC-1, differentially regulate presynaptic composition in the striatum and hippocampus | Q28513167 | ||
BLOC-1 interacts with BLOC-2 and the AP-3 complex to facilitate protein trafficking on endosomes | Q28513739 | ||
BLOC-1 complex deficiency alters the targeting of adaptor protein complex-3 cargoes | Q28567313 | ||
A function for the AP3 coat complex in synaptic vesicle formation from endosomes | Q28567917 | ||
Rim is a putative Rab3 effector in regulating synaptic-vesicle fusion | Q28575529 | ||
Synaptic vesicle recycling at CNS snapses without AP-2 | Q28577663 | ||
DTNBP1, a schizophrenia susceptibility gene, affects kinetics of transmitter release | Q28586199 | ||
Snapin-Regulated Late Endosomal Transport Is Critical for Efficient Autophagy-Lysosomal Function in Neurons | Q28592995 | ||
Roles of BLOC-1 and adaptor protein-3 complexes in cargo sorting to synaptic vesicles | Q28594620 | ||
SNAREs--engines for membrane fusion | Q29547230 | ||
Definition of the readily releasable pool of vesicles at hippocampal synapses | Q29620402 | ||
Mutation of Ser-50 and Cys-66 in Snapin modulates protein structure and stability. | Q30414930 | ||
Endosomal sorting of readily releasable synaptic vesicles | Q30497264 | ||
An expanded palette of genetically encoded Ca²⁺ indicators | Q30533809 | ||
Clathrin regenerates synaptic vesicles from endosomes. | Q30614584 | ||
The coupling between synaptic vesicles and Ca2+ channels determines fast neurotransmitter release | Q33273491 | ||
How does synaptotagmin trigger neurotransmitter release? | Q33345212 | ||
Synaptic vesicle pools | Q33983958 | ||
Optical mapping of release properties in synapses | Q34085810 | ||
Evidence for recycling of synaptic vesicle membrane during transmitter release at the frog neuromuscular junction | Q34207383 | ||
Clathrin/AP-2 mediate synaptic vesicle reformation from endosome-like vacuoles but are not essential for membrane retrieval at central synapses. | Q34423567 | ||
Reduced synaptic vesicle protein degradation at lysosomes curbs TBC1D24/sky-induced neurodegeneration | Q34566701 | ||
Distinct endocytic pathways control the rate and extent of synaptic vesicle protein recycling | Q34568799 | ||
Do different endocytic pathways make different synaptic vesicles? | Q34621292 | ||
Rab3-GAP controls the progression of synaptic homeostasis at a late stage of vesicle release | Q34688291 | ||
Synaptic vesicles retain their identity through the endocytic cycle | Q34746833 | ||
Loss of AP-3 function affects spontaneous and evoked release at hippocampal mossy fiber synapses | Q35133914 | ||
A small pool of vesicles maintains synaptic activity in vivo | Q35345585 | ||
Concurrent imaging of synaptic vesicle recycling and calcium dynamics | Q35505880 | ||
The role of Snapin in neurosecretion: snapin knock-out mice exhibit impaired calcium-dependent exocytosis of large dense-core vesicles in chromaffin cells | Q35647623 | ||
Lysosomal proteolysis inhibition selectively disrupts axonal transport of degradative organelles and causes an Alzheimer's-like axonal dystrophy | Q35955959 | ||
Snapin is critical for presynaptic homeostatic plasticity | Q36091712 | ||
The synaptic vesicle cycle: a single vesicle budding step involving clathrin and dynamin | Q36237077 | ||
Synaptic vesicle reuse and its implications | Q36361004 | ||
Proteasome inhibition triggers activity-dependent increase in the size of the recycling vesicle pool in cultured hippocampal neurons | Q37149682 | ||
Presynaptic membrane retrieval and endosome biology: defining molecularly heterogeneous synaptic vesicles | Q37197478 | ||
Ultrafast endocytosis at mouse hippocampal synapses. | Q37642826 | ||
Readily releasable vesicles recycle at the active zone of hippocampal synapses | Q37701997 | ||
Molecular organization and plasticity of the cytomatrix at the active zone | Q37949766 | ||
Synaptic vesicle generation from central nerve terminal endosomes | Q38262876 | ||
Clathrin-mediated endocytosis is the dominant mechanism of vesicle retrieval at hippocampal synapses. | Q39751968 | ||
Loss of skywalker reveals synaptic endosomes as sorting stations for synaptic vesicle proteins | Q39754179 | ||
Increased transmitter release at excitatory synapses produced by direct activation of adenylate cyclase in rat hippocampal slices. | Q41660380 | ||
A vesicle superpool spans multiple presynaptic terminals in hippocampal neurons. | Q41786614 | ||
The role of non-canonical SNAREs in synaptic vesicle recycling | Q41829974 | ||
CDK5 serves as a major control point in neurotransmitter release. | Q41862687 | ||
RIM-binding protein links synaptic homeostasis to the stabilization and replenishment of high release probability vesicles | Q41891455 | ||
A preferentially segregated recycling vesicle pool of limited size supports neurotransmission in native central synapses | Q42022259 | ||
High- and low-mobility stages in the synaptic vesicle cycle | Q42125696 | ||
Synaptic vesicle pools: an update | Q42140979 | ||
v-SNARE composition distinguishes synaptic vesicle pools. | Q42142233 | ||
Neuronal deficiency of presenilin 1 inhibits amyloid plaque formation and corrects hippocampal long-term potentiation but not a cognitive defect of amyloid precursor protein [V717I] transgenic mice. | Q42675168 | ||
cAMP Modulates Intracellular Ca2+ Sensitivity of Fast-Releasing Synaptic Vesicles at the Calyx of Held Synapse | Q42879231 | ||
Direct interactions between C. elegans RAB-3 and Rim provide a mechanism to target vesicles to the presynaptic density | Q43241214 | ||
Regulation of presynaptic neurotransmission by macroautophagy | Q43242957 | ||
Rim1 and rabphilin-3 bind Rab3-GTP by composite determinants partially related through N-terminal alpha -helix motifs | Q43657454 | ||
Small-scale isolation of synaptic vesicles from mammalian brain | Q44391903 | ||
The ubiquitin proteasome system acutely regulates presynaptic protein turnover and synaptic efficacy | Q44461744 | ||
P4510 | describes a project that uses | ImageJ | Q1659584 |
P433 | issue | 15 | |
P407 | language of work or name | English | Q1860 |
P304 | page(s) | 2059-2077 | |
P577 | publication date | 2015-06-24 | |
P1433 | published in | The EMBO Journal | Q1278554 |
P1476 | title | Regulation of synaptic activity by snapin-mediated endolysosomal transport and sorting | |
P478 | volume | 34 |
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Q30780429 | Facilitation of axon regeneration by enhancing mitochondrial transport and rescuing energy deficits |
Q88957780 | Lysosome trafficking and signaling in health and neurodegenerative diseases |
Q45976861 | Neurodevelopmental disease mechanisms, primary cilia, and endosomes converge on the BLOC-1 and BORC complexes. |
Q47578979 | Overexpression of cypin alters dendrite morphology, single neuron activity, and network properties via distinct mechanisms |
Q39377253 | Recent insights on principles of synaptic protein degradation |
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Q51279703 | SNAPIN is critical for lysosomal acidification and autophagosome maturation in macrophages. |
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Q49795603 | Soluble Aβ1-42 increases the heterogeneity in synaptic vesicle pool size among synapses by suppressing intersynaptic vesicle sharing |
Q47622230 | Structural and Functional Characterization of the Interaction of Snapin with the Dopamine Transporter: Differential Modulation of Psychostimulant Actions. |
Q37490360 | The Proteome of BLOC-1 Genetic Defects Identifies the Arp2/3 Actin Polymerization Complex to Function Downstream of the Schizophrenia Susceptibility Factor Dysbindin at the Synapse |
Q100455194 | The cross-talk of energy sensing and mitochondrial anchoring sustains synaptic efficacy by maintaining presynaptic metabolism |
Q64039609 | The road to LROs: insights into lysosome-related organelles from Hermansky-Pudlak syndrome and other rare diseases |
Q36156512 | miR-27b shapes the presynaptic transcriptome and influences neurotransmission by silencing the polycomb group protein Bmi1 |
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