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Ontology Browser

Parent Terms Term With Siblings Child Terms
autophagosome membrane docking  
ciliary basal body-plasma membrane docking  
contractile vacuole dissociation from plasma membrane 
endocytosis +   
endoplasmic reticulum-peroxisome tethering 
endoplasmic reticulum-plasma membrane tethering  
endosomal transport +   
endosome to lysosome transport +   
exocytosis +   
Golgi vesicle transport +   
late endosome to vacuole transport +   
mitochondrion-derived vesicle mediated transport +   
mitochondrion-endoplasmic reticulum membrane tethering  
multivesicular body sorting pathway +   
neurotransmitter receptor transport postsynaptic membrane to endosome  
neurotransmitter receptor transport, postsynaptic endosome to lysosome  
nucleus-vacuole junction assembly 
peroxisome-chloroplast membrane tethering 
phagocytosis +   
plasma membrane to endosome transport +   
plastid to vacuole vesicle-mediated transport 
regulation of vesicle-mediated transport +   
retrograde transport, plasma membrane to Golgi  
SNARE complex disassembly +   
transcytosis +   
vacuole-ER tethering 
vacuole-mitochondria membrane tethering 
vesicle budding from membrane +   
vesicle cargo loading +   
vesicle docking +   
The initial attachment of a transport vesicle membrane to the target membrane, mediated by proteins protruding from the membrane of the vesicle and the target membrane. Docking requires only that the two membranes come close enough for these proteins to interact and adhere.
vesicle fusion +   
vesicle targeting +   
vesicle uncoating +   
vesicle-mediated cholesterol transport +   
vesicle-mediated intercellular transport  
vesicle-mediated transport between endosomal compartments +   
vesicle-mediated transport in synapse +   
vesicle-mediated transport involved in floral organ abscission +  
vesicle-mediated transport to the plasma membrane +   

Exact Synonyms: vesicle to membrane docking
Definition Sources: GOC:ai, GOC:jid

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RGD is funded by grant HL64541 from the National Heart, Lung, and Blood Institute on behalf of the NIH.