Metaplasticity at identified inhibitory synapses in Aplysia (original) (raw)
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- Published: 23 October 1997
Nature volume 389, pages 860–865 (1997)Cite this article
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Abstract
Synaptic plasticity is an important feature of neural networks involved in the encoding of information. In the analysis of long-term potentiation and long-term depression, several examples have emerged in which this plasticity is itself modulated1,2,3. This higher-order form of plasticity has been referred to as ‘metaplasticity’4, a modification of synapses reflected as a change in the ability to induce or maintain plasticity. These observations raise the question of the possible advantage of regulating the intrinsic plastic properties of a synapse. The neural circuit mediating the siphon withdrawal reflex in Aplysia provides a useful network in which to examine this question directly. Inhibitory synapses in this circuit (from L30 neurons) exhibit a variety of forms of activity-dependent short-term synaptic enhancement which contribute to dynamic gain control in the siphon withdrawal reflex5,6,7,8,9. Here we report that tail shock, an extrinsic modulatory input of known behavioural relevance, induces differential metaplasticity at this synapse, attenuating its ability to exhibit short-term synaptic enhancement after presynaptic activation (augmentation and post-tetanic potentiation), while leaving intact its capacity for enhancement during activation. This attenuation of inhibition at the synaptic level seems to mediate comparable attenuation of inhibitory modulation at both network and behavioural levels.
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References
- Kirkwood, A., Rioult, M. G. & Bear, M. F. Experience-dependent modification of synaptic plasticity in visual cortex. Nature 381, 526–528 (1996).
Article ADS CAS Google Scholar - Demendonca, A. & Ribeiro, J. A. Adenosine and neuronal plasticity. Life Sci. 60, 245–251 (1996).
Article Google Scholar - Kaneko, S., Maeda, T. & Satoh, M. Cognitive enhancers and hippocampal long-term potentiation in vitro. Behav. Brain Res. 83, 45–49 (1997).
Article CAS Google Scholar - Abraham, W. C. & Bear, M. F. Metaplasticity: the plasticity of synaptic plasticity. Trends Neurosci. 19, 126–130 (1996).
Article CAS Google Scholar - Fischer, T. M. & Carew, T. J. Activity dependent recurrent inhibition: A mechanism for dynamic gain control in the siphon withdrawal reflex of Aplysia. J. Neurosci. 13, 1302–1314 (1993).
Article CAS Google Scholar - Fischer, T. M. & Carew, T. J. Cutaneous activation of the inhibitory L30 interneurons provides a mechanism for regulating adaptive gain control in the siphon withdrawal reflex of Aplysia. J. Neurosci. 15, 762–773 (1995).
Article CAS Google Scholar - Fisher, S. A., Fischer, T. M. & Carew, T. J. Multiple overlapping processes underlying short-term synaptic enhancement. Trends Neurosci. 20, 170–177 (1997).
Article CAS Google Scholar - Blazis, D. E. J., Fischer, T. M. & Carew, T. J. Aneural network model of inhibitory information processing in Aplysia. Neural Computat. 5, 213–227 (1993).
Article Google Scholar - Lieb, J. R. & Frost, W. N. Realistic simulation of the Aplysia siphon withdrawal circuit: Roles of circuit elements in producing motor output. J. Neurophysiol. 77, 1249–1268 (1997).
Article Google Scholar - Frost, W. N., Clark, G. A. & Kandel, E. R. Parallel processing of short-term memory for sensitization in Aplysia. J. Neurobiol. 19, 297–334 (1988).
Article CAS Google Scholar - Marcus, E. A., Nolen, T. G., Rankin, C. H. & Carew, T. J. Behavioral dissociation of dishabituation, sensitization, and inhibition of Aplysia. Science 241, 210–213 (1988).
Article ADS CAS Google Scholar - Zucker, R. S. Exocytosis: A molecular and physiological perspective. Neuron 17, 1049–1055 (1996).
Article CAS Google Scholar - Zucker, R. S. Short-term synaptic plasticity. Annu. Rev. Neurosci. 12, 13–31 (1989).
Article CAS Google Scholar - Fischer, T. M., Zucker, R. S. & Carew, T. J. Activity-dependent potentiation of synaptic transmission from L30 inhibitory interneurons of Aplysia depends upon residual presyanptic calcium but not on postsynaptic calcium. J. Neurophysiol.(in the press).
- Kamiya, H. & Zucker, R. S. Residual Ca2+ and short-term synaptic plasticity. Nature 371, 603–606 (1994).
Article ADS CAS Google Scholar - Brunelli, M., Castellucci, V. & Kandel, E. R. Synaptic facilitation and behavioral sensitization in Aplysia: possible role of serotonin and cyclic AMP. Science 194, 1178–1180 (1976).
Article ADS CAS Google Scholar - Fitzgerald, K. & Carew, T. J. Serotinin mimics tail shock in producing transient inhibition in the siphon withdrawal reflex of Aplysia. J. Neurosci. 11, 2510–2518 (1991).
Article CAS Google Scholar - Walters, E. T. Afunctional, cellular, and evolutionary model of nocioceptive plasticity in Aplysia. Biol. Bull. 180, 241–251 (1991).
Article CAS Google Scholar - Mercer, A. R., Emptage, N. J. & Carew, T. J. Pharmacological dissociation of modulatory effects of serotonin in Aplysia sensory neurons. Science 254, 1811–1813 (1991).
Article ADS CAS Google Scholar - Glanzman, D. L. et al. Depletion of serotonin in the nervous system of Aplysia reduces the behavioral enhancement of gill withdrawal as well as the heterosynaptic facilitation producted by tail shock. J. Neurosci. 9, 4200–4213 (1989).
Article CAS Google Scholar - Abrams, T. W., Castellucci, V. F., Camardo, J. S., Kandel, E. R. & Lloyd, P. E. Two endogenous neuropeptides modulate the gill and siphon withdrawal reflex in Aplysia by presynaptic facilitation involving c-AMP dependent closure of a serotonin-sensitive potassium channel. Proc. Natl Acad. Sci. USA 81, 7956–7960 (1984).
Article ADS CAS Google Scholar - Katz, B. & Miledi, R. The role of calcium in neuromuscular facilitation. J. Physiol. (Lond.) 195, 481–492 (1968).
Article CAS Google Scholar - Delaney, K. R. & Tank, D. W. Aquantitative measurement of the dependence of short-term synaptic enhancement on presynaptic residual calcium. J. Neurosci. 14, 5885–5902 (1994).
Article CAS Google Scholar - Carew, T. J., Hawkins, R. D. & Kandel, E. R. Differential classical conditioning of a defensive withdrawal reflex in Aplysia californica. Science 219, 397–400 (1983).
Article ADS CAS Google Scholar - Emptage, N. J. & Carew, T. J. Long-term synaptic facilitation in the absence of short-term facilitation in Aplysia neurons. Science 262, 253–256 (1993).
Article ADS CAS Google Scholar - Hawkins, R. D., Castellucci, V. F. & Kandel, E. R. Interneurons invovled in mediation and modulation of gill-withdrawal reflex in Aplysia. I. Identification and characterization. J. Neurophysiol. 45, 304–314 (1981).
Article CAS Google Scholar - Hickie, C. & Walters, E. T. Motor neuronal control of tail-directed and head-directed siphon responses in Aplysia californica. J. Neurophysiol. 74, 307–321 (1995).
Article CAS Google Scholar - Hawkins, R. D. & Schacher, S. Identified facilitator neurons L29 and L28 are excited by cutaneous stimuli used in dishabituation, sensitization, and classical conditioning of Aplysia. J. Neurosci. 9, 4236–4245 (1989).
Article CAS Google Scholar
Acknowledgements
We thank S. McKay and C. Sherff for comments on earlier versions of this manuscript, and P. Hofstadter for animal care and technical support.
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Author notes
- Diana E. J. Blazis
Present address: College of Natural Sciences and Mathematics, University of Massachusetts, Amherst, Massachusetts, 01003-4522, USA
Authors and Affiliations
- Department of Psychology, Yale University, New Haven, 065208205, Connecticut, USA
Thomas M. Fischer, Diana E. J. Blazis, Naomi A. Priver & Thomas J. Carew
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- Thomas M. Fischer
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Correspondence toThomas J. Carew.
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Fischer, T., Blazis, D., Priver, N. et al. Metaplasticity at identified inhibitory synapses in Aplysia.Nature 389, 860–865 (1997). https://doi.org/10.1038/39892
- Received: 22 May 1997
- Accepted: 05 August 1997
- Issue Date: 23 October 1997
- DOI: https://doi.org/10.1038/39892