Vesicular traffic in cell navigation
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Summary
The role of soluble N‐ethylmaleimide‐sensitive fusion attachment protein (SNAP) receptors (SNAREs), which constitute the core machinery for membrane fusion and are essential for intracellular vesicular trafficking, are reviewed and concluded that endosomal SNAREs are important for cell navigation.
- Type
- review
- Published
- 2011-12-01
- Cited by
- 78
- References
- 88
- Access
- Open access
- OpenAlex
- https://openalex.org/W1658801485
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:12449138
Keywords
Cell biology, Endosome, Multicellular organism, Vesicular transport protein, Biology
References
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- The Tetanus Neurotoxin‐Sensitive and Insensitive Routes to and from the Plasma Membrane: Fast and Slow Pathways?
- Direct Interaction of a Brain Voltage-Gated K+Channel with Syntaxin 1A: Functional Impact on Channel Gating
- Deletion of SNAP-23 Results in Pre-Implantation Embryonic Lethality in Mice
- Cell Spreading and Lamellipodial Extension Rate Is Regulated by Membrane Tension
- Lamellipodium extension and membrane ruffling require different SNARE-mediated trafficking pathways
- Cycling of Synaptic Vesicles: How Far? How Fast!
- Endocytosis-dependent desensitization and protein synthesis–dependent resensitization in retinal growth cone adaptation
- SNAP-25 modulation of calcium dynamics underlies differences in GABAergic and glutamatergic responsiveness to depolarization.
- K+ Channel Facilitation of Exocytosis by Dynamic Interaction with Syntaxin
- Protein transport. A fusion of new ideas.
- [Tetanus neurotoxin-mediated cleavage of cellubrevin impairs epithelial cell migration and integrin-dependent cell adhesion].
- Synaptobrevin is essential for fast synaptic-vesicle endocytosis
- The regulated exocytosis of enlargeosomes is mediated by a SNARE machinery that includes VAMP4
- Omega-3 and omega-6 fatty acids stimulate cell membrane expansion by acting on syntaxin 3
- Plasma membrane area increases with spread area by exocytosis of a GPI-anchored protein compartment.
Cited by
- Biogenesis, secretion, and intercellular interactions of exosomes and other extracellular vesicles.
- Rôle des protéines SNARE au niveau de la vacuole bactérienne durant les phases précoces de l'infection par Yersinia pseudotuberculosis dans un contexte d'autophagie
- Cholesterol regulates Syntaxin 6 trafficking at trans-Golgi network endosomal boundaries.
- Cell death, cavitation and spontaneous multi‐differentiation of dental pulp stem cells‐derived spheroids in vitro: A journey to survival and organogenesis
- Intracellular signaling and membrane trafficking control bidirectional growth cone guidance.
- Goliath family E3 ligases regulate the recycling endosome pathway via VAMP3 ubiquitylation
- Toxoplasma gondii Syntaxin 6 Is Required for Vesicular Transport Between Endosomal-Like Compartments and the Golgi Complex
- Role of VAMP3 and VAMP7 in the commitment of Yersinia pseudotuberculosis to LC3-associated pathways involving single- or double-membrane vacuoles
- [Membrane traffic, a new actor in axon guidance].
- Role of the ERK signaling pathway in regulating vasopressin secretion in dehydrated rats
- Biogenesis and secretion of exosomes.
- Expression of α-taxilin in the murine gastrointestinal tract: potential implication in cell proliferation
- Should we keep on? Looking into pharmacogenomics of ADHD in adulthood from a different perspective.
- Microenvironment-induced PTEN loss by exosomal microRNA primes brain metastasis outgrowth
- Autophagy and proteins involved in vesicular trafficking
- SNARE complex in developmental psychiatry: neurotransmitter exocytosis and beyond
- An investigation into the role of microvesicles in mutant p53 invasive gain-of-function
- Le trafic membranaire, un nouvel acteur du guidage
- Blockade of the SNARE Protein Syntaxin 1 Inhibits Glioblastoma Tumor Growth
- Exosomes: From Functions in Host-Pathogen Interactions and Immunity to Diagnostic and Therapeutic Opportunities.
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