Neurotransmitters and peptides: whispered secrets and public announcements
- 28 November 2008
- journal article
- review article
- Published by Wiley in The Journal of Physiology
- Vol. 586 (23) , 5625-5632
- https://doi.org/10.1113/jphysiol.2008.159103
Abstract
The magnocellular oxytocin and vasopressin neurones of the hypothalamus are now understood in exceptional detail. Extensive quantitative details from many independent sources are available describing the electrical activity of the neurones in diverse circumstances, the subcellular localization of vesicles, and rates of hormone secretion from nerve endings into the blood and from dendrites into the brain. These data enable the relationship of electrical (spike) activity to vesicle exocytosis to be inferred with some precision. Such calculations lead to the conclusion that exocytosis of peptide-containing vesicles is a relatively rare event even in this vesicle-dense system. At any given release site in the neurohypophysis, it seems that several hundred spikes are needed on average to release a single vesicle. Release from compartments within the brain seems also to be very rare, making it implausible that peptides can act in a temporally precise, anatomically specific manner. However, very large amounts of peptide are released by these infrequent events, consistent with their likely role as neurohormonal messengers.Keywords
This publication has 63 references indexed in Scilit:
- Postsynaptic Secretion of BDNF and NT-3 from Hippocampal Neurons Depends on Calcium–Calmodulin Kinase II Signaling and Proceeds via Delayed Fusion Pore OpeningJournal of Neuroscience, 2007
- Neuropeptides as synaptic transmittersCell and tissue research, 2006
- Information Processing in the Hypothalamus: Peptides and Analogue ComputationJournal of Neuroendocrinology, 2006
- Differential Vesicular Targeting and Time Course of Synaptic Secretion of the Mammalian NeurotrophinsJournal of Neuroscience, 2005
- Behavioural impact of intraseptally released vasopressin and oxytocin in ratsExperimental Physiology, 2000
- Ca2+-Dependent Exocytosis in the Somata of Dorsal Root Ganglion NeuronsNeuron, 1996
- In vivo conversion of vasopressin after microinjection into limbic brain areas of ratsPeptides, 1989
- Vasopressin and Oxytocin Content Are Decreased in the Brain Stems of Spontaneously Hypertensive RatsNeuroendocrinology, 1983
- Relative Efficiency of Neural Firing Patterns for Vasopressin Release in vitroNeuroendocrinology, 1981
- Morphology of the accessory neurosecretory nuclei and of the retrochiasmatic part of the supraoptic nucleus of the ratCells Tissues Organs, 1971