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Any process that is carried out at the cellular level, but not necessarily restricted to a single cell. For example, cell communication occurs among more than one cell, but occurs at the cellular level. Any process that modulates the rate, frequency, or extent of ER to Golgi vesicle-mediated transport, the directed movement of substances from the endoplasmic reticulum (ER) to the Golgi, mediated by COP II vesicles. Small COP II coated vesicles form from the ER and then fuse directly with the cis-Golgi. Larger structures are transported along microtubules to the cis-Golgi. Any process that modulates the frequency, rate or extent of the directed movement of substances (such as macromolecules, small molecules, ions) into, out of, within or between cells by means of some external agent such as a transporter or pore. Any process that modulates the frequency, rate or extent of any process by which a cell, a substance, or a cellular entity is transported to, or maintained in, a specific location. Any process that modulates the frequency, rate or extent of disassembly of the SNARE complex. The SNARE complex is a protein complex involved in membrane fusion; a stable ternary complex consisting of a four-helix bundle, usually formed from one R-SNARE and three Q-SNAREs with an ionic layer sandwiched between hydrophobic layers. Any process that modulates the frequency, rate or extent of the transport of proteins from the Golgi to the plasma membrane. Any process that modulates the frequency, rate, or destination of vesicle-mediated transport to, from or within the Golgi apparatus. Any process that modulates the rate, frequency, or extent of the directed movement of substances within a cell by a cellular process that begins with the formation of membrane-bounded vesicles in which the transported substances are enclosed or located in the vesicle membrane which are then targeted to, and fuse with, an acceptor membrane contributing to the shedding of a floral organ. Any process that modulates the frequency, rate or extent of endocytosis. Any process that modulates the frequency, rate or extent of a cellular process, any of those that are carried out at the cellular level, but are not necessarily restricted to a single cell. For example, cell communication occurs among more than one cell, but occurs at the cellular level. Any process that modulates the frequency, rate or extent of a biological process. Biological processes are regulated by many means; examples include the control of gene expression, protein modification or interaction with a protein or substrate molecule. Any process that modulates the frequency, rate or extent of exocytosis. The directed movement of substances (such as macromolecules, small molecules, ions) into, out of, within or between cells, or within a multicellular organism by means of some external agent such as a transporter or pore. Any process that modulates the rate, frequency, or extent of vesicle-mediated transport, the directed movement of substances, either within a vesicle or in the vesicle membrane, into, out of or within a cell. The directed movement of substances into, out of or within a cell by a cellular process that begins with the formation of membrane-bounded vesicles in which the transported substances are enclosed or located in the vesicle membrane. Vesicles are then targeted to, and fuse with, an acceptor membrane. Any process that modulates the frequency, rate or extent of vesicle fusion.

View Gene Ontology (GO) Term

GO TERM SUMMARY

Name: regulation of vesicle-mediated transport
Acc: GO:0060627
Aspect: Biological Process
Desc: Any process that modulates the rate, frequency, or extent of vesicle-mediated transport, the directed movement of substances, either within a vesicle or in the vesicle membrane, into, out of or within a cell.
Proteins in PDR annotated with:
   This term: 3 [Search]
   Term or descendants: 365 [Search]


[geneontology.org]
INTERACTIVE GO GRAPH

GO:0060627 - regulation of vesicle-mediated transport (interactive image map)

YRC Informatics Platform - Version 3.0
Created and Maintained by: Michael Riffle