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exocytosis
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exocytosis

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Also known as vesicle exocytosis, GO:0006887

thumb|upright=1.35|Exocytosis of neurotransmitters into a synapse from neuron A to neuron B. Exocytosis () is a form of active transport in which a cell transports molecules (e.g., neurotransmitters and proteins) out of the cell. As an active transport mechanism, exocytosis requires the use of energy to transport material. Exocytosis and its counterpart, endocytosis, are used by all cells because most chemical substances important to them are large polar molecules that cannot pass through the hydrophobic portion of the cell membrane by passive means. Exocytosis is the process by which a large

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Encyclopedic overview

12 sections
Contents
  • History
  • Types
  • Steps
  • Vesicle trafficking
  • Vesicle tethering
  • Vesicle docking
  • Vesicle priming
  • Vesicle fusion
  • Vesicle retrieval
  • See also
  • References
  • External links

thumb|upright=1.35|Exocytosis of neurotransmitters into a synapse from neuron A to neuron B. Exocytosis () is a form of active transport in which a cell transports molecules (e.g., neurotransmitters and proteins) out of the cell. As an active transport mechanism, exocytosis requires the use of energy to transport material. Exocytosis and its counterpart, endocytosis, are used by all cells because most chemical substances important to them are large polar molecules that cannot pass through the hydrophobic portion of the cell membrane by passive means. Exocytosis is the process by which a large amount of molecules are released; thus it is a form of bulk transport. Exocytosis occurs via secretory portals at the cell plasma membrane called porosomes. Porosomes are permanent cup-shaped lipoprotein structures at the cell plasma membrane, where secretory vesicles transiently dock and fuse to release intra-vesicular contents from the cell.

In exocytosis, membrane-bound secretory vesicles are carried to the cell membrane, where they dock and fuse at porosomes and their contents (i.e., water-soluble molecules) are secreted into the extracellular environment. This secretion is possible because the vesicle transiently fuses with the plasma membrane. In the context of neurotransmission, neurotransmitters are typically released from synaptic vesicles into the synaptic cleft via exocytosis; however, neurotransmitters can also be released via reverse transport through membrane transport proteins.

Excerpted from Wikipedia’s “exocytosis” article, available under the CC BY-SA 4.0 licence.

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