A critical period for macromolecular synthesis in long-term heterosynaptic facilitation in Aplysia.
@article{Montarolo1986ACP,
title={A critical period for macromolecular synthesis in long-term heterosynaptic facilitation in Aplysia.},
author={Pier Giorgio Montarolo and Philip Goelet and Vincent F. Castellucci and Jessica Morgan and Eric R. Kandel and Samuel Schacher},
journal={Science},
year={1986},
volume={234 4781},
pages={
1249-54
}
}Both long-term and short-term sensitization of the gill and siphon withdrawal reflex in Aplysia involve facilitation of the monosynaptic connections between the sensory and motor neurons. To analyze the relationship between these two forms of synaptic facilitation at the cellular and molecular level, this monosynaptic sensorimotor component of the gill-withdrawal reflex of Aplysia can be reconstituted in dissociated cell culture. Whereas one brief application of 1 microM serotonin produced…
761 Citations
cAMP evokes long-term facilitation in Aplysia sensory neurons that requires new protein synthesis.
- BiologyScience
- 1988
Because 5-HT mediates short-term facilitation through adenosine 3',5'-monophosphate (cAMP)-dependent protein phosphorylation, the role of cAMP in the long-term modulation of this identified synapse was examined.
Long-term heterosynaptic inhibition in Aplysia
- BiologyNature
- 1988
Heterosynaptic depression parallels heterOSynaptic facilitation in having a long-term as well as a short-term form, and in both cases the long- term modulation requires the synthesis of gene products not essential for the short- term changes.
Injection of the cAMP-responsive element into the nucleus of Aplysia sensory neurons blocks long-term facilitation
- BiologyNature
- 1990
IN both vertebrates and invertebrates, long-term memory differs from short-term in requiring protein synthesis during training1,2. Studies of the gill and siphon withdrawal reflex in Aplysia indicate…
Postsynaptic modifications in long-term facilitation in Aplysia: upregulation of excitatory amino acid receptors
- BiologyThe Journal of neuroscience : the official journal of the Society for Neuroscience
- 1995
It is shown that 24 hr following an application of 5-HT, which produces long-term synaptic facilitation (LTF), the response of the motoneuron to an excitatory amino acid agonist of the synaptic receptors is increased and general inhibition of protein synthesis with anisomycin blocks this enhancement.
Long-term synaptic facilitation in the absence of short-term facilitation in Aplysia neurons.
- Biology, PsychologyScience
- 1993
Short-term and long-term synaptic facilitation are induced in parallel in the sensory neurons and that the short-term process, because it is induced and expressed at the synapse, can occur locally, but the long- term process,Because of its dependence on a nuclear signal, is expressed throughout the neuron.
Serotonin produces long-term changes in the excitability of Aplysia sensory neurons in culture that depend on new protein synthesis
- BiologyThe Journal of neuroscience : the official journal of the Society for Neuroscience
- 1987
The finding that four repeated applications of 1 microM 5-HT caused a significant increase in the excitability of sensory neurons, lasting at least 24 hr, suggests that the sensory neuron uses gene products to modulate membrane currents in its long- term response to repeated external stimuli that are not required in its short-term response to a single stimulus.
Dynamics of Induction and Expression of Long-Term Synaptic Facilitation in Aplysia
- BiologyThe Journal of Neuroscience
- 1996
The hypothesis that LTF is not a simple elaboration of STF is supported, raising the possibility that STF, ITF, and LTF may reflect components of different memory phases in the intact animal.
A molecular mechanism for long-term sensitization in Aplysia
- BiologyNature
- 1987
It is reported that a protocol producing long-term sensitization results in a decrease in the amount of regulatory subunits of the cAMP-dependent protein kinase in animals 24 h after training, with no effect on the catalytic subunit.
References
SHOWING 1-10 OF 34 REFERENCES
Monosynaptic connections made by the sensory neurons of the gill- and siphon-withdrawal reflex in Aplysia participate in the storage of long-term memory for sensitization.
- Biology, PsychologyProceedings of the National Academy of Sciences of the United States of America
- 1985
It is found that in the gill- and siphon- withdrawal reflex of Aplysia, the memory for short-term sensitization grades smoothly into long-term memory with increased amounts of sensitization training, and this finding should facilitate study of the cellular and molecular mechanisms involved in the conversion of short- term to long- term memory.
Synaptic facilitation and behavioral sensitization in Aplysia: possible role of serotonin and cyclic AMP.
- BiologyScience
- 1976
The neural changes accompanying sensitization of the gill-withdrawal reflex in Aplysia are associated with presynaptic facilitation at monosynaptic connections between sensory neurons and motor…
Morphological basis of long-term habituation and sensitization in Aplysia.
- Biology, PsychologyScience
- 1983
The morphological basis of the persistent synaptic plasticity that underlies long-term habituation and sensitization of the gill withdrawal reflex in Aplysia californica was explored by examining the fine structure of sensory neuron presynaptic terminals in control animals and in animals whose behavior had been modified by training.
Two endogenous neuropeptides modulate the gill and siphon withdrawal reflex in Aplysia by presynaptic facilitation involving cAMP-dependent closure of a serotonin-sensitive potassium channel.
- BiologyProceedings of the National Academy of Sciences of the United States of America
- 1984
It appears that several transmitters can converge to produce presynaptic facilitation in the sensory neurons of the defensive withdrawal reflex, and all of the transmitters studied here, the SCPs and serotonin, act via an identical molecular cascade.
Cyclic Adenosine Monophosphate in the Nervous System of Aplysia californica : II. Effect of serotonin and dopamine
- Biology
- 1972
Serotonin and dopamine, both likely transmitter substances in Aplysia, stimulated formation of adenosine-3',5' monophosphate (cAMP) in ganglia, connectives, and identified nerve cell bodies, suggesting that receptors for the response are localized throughout the nervous system, as is adenyl cyclase.
Serotonin increases intracellular Ca2+ transients in voltage-clamped sensory neurons of Aplysia californica.
- BiologyProceedings of the National Academy of Sciences of the United States of America
- 1984
It seems possible that the enhancement of Ca2+ accumulation and the reduction in K+ current act synergistically in producing short-term presynaptic facilitation, which might contribute to processes such as classical conditioning or long-term sensitization that may depend on Ca2+.
Contribution of individual mechanoreceptor sensory neurons to defensive gill-withdrawal reflex in Aplysia.
- BiologyJournal of neurophysiology
- 1978
The results indicate that the known neural elements may quantitatively account for most of the expression of the behavior and its short-term habituation.
Intracellular injection of t he catalytic subunit of cyclic AMP-dependent protein kinase simulates facilitation of transmitter release underlying behavioral sensitization in Aplysia.
- BiologyProceedings of the National Academy of Sciences of the United States of America
- 1980
Intracellular injection of the catalytic subunit of cyclic AMP-dependent protein kinase (ATP:protein phosphotransferase, EC 2.7.1.37) purified from bovine heart mimics the action of the natural transmitter and of serotonin, the putative transmitter, by simulating the physiological changes that accompany presynaptic facilitation.
Molecular biology of learning: modulation of transmitter release.
- BiologyScience
- 1982
This review focuses primarily on short-term sensitization of the gill and siphon reflex in the marine mollusk, Aplysia californica, and analyses of this form of learning provide direct evidence that protein phosphorylation dependent on cyclic adenosine monophosphate can modulate synaptic action.
Calcium-mediated reduction of ionic currents: a biophysical memory trace.
- BiologyScience
- 1984
Specific ionic currents in neural tissue undergo transformations lasting days after associative training with physiologic stimuli, and hence this biophysical basis of Hermissenda learning could have relevance for species other than the gastropod studied.