Inhibitor of protein synthesis blocks longterm behavioral sensitization in the isolated gill‐withdrawal reflex of Aplysia
- 1 January 1989
- journal article
- research article
- Published by Wiley in Journal of Neurobiology
- Vol. 20 (1), 1-9
- https://doi.org/10.1002/neu.480200102
Abstract
To study the effect of protein synthesis inhibition on long‐term sensitization of the gill‐ and siphon‐withdrawal reflex of Aplysia, we have developed an isolated reflex preparation in which we could expose the inhibitor to only that part of the central nervous system involved in mediating the reflex and not to the other parts of the animal's central nervous system, thus minimizing the possible systemic side effects. We have found that long‐term sensitization can be obtained in the isolated gill reflex, and that this long‐term process, but not the short‐term process, is blocked selectively by anisomycin, a reversible inhibitor of protein synthesis. Moreover, to obtain this blockade of long‐term sensitization, this drug need only be applied during the training procedure.Keywords
This publication has 24 references indexed in Scilit:
- Cellular and molecular analysis of associative learning and memory in HermissendaTrends in Neurosciences, 1988
- A quantitative analysis of 2-D gels identifies proteins in which labeling is increased following long-term sensitization in AplysiaNeuron, 1988
- Long-Term Sensitization in Aplysia : Biophysical Correlates in Tail Sensory NeuronsScience, 1987
- A critical level of protein synthesis is required for long‐term potentiationSynapse, 1987
- A Critical Period for Macromolecular Synthesis in Long-Term Heterosynaptic Facilitation in AplysiaScience, 1986
- The long and the short of long–term memory—a molecular frameworkNature, 1986
- Protein synthesis and memory: A review.Psychological Bulletin, 1984
- Morphological Basis of Long-Term Habituation and Sensitization in AplysiaScience, 1983
- Cellular Analysis of Long-Term Habituation of the Gill-Withdrawal Reflex of Aplysia californicaScience, 1978
- Memory in Mice as Affected by Intracerebral PuromycinScience, 1963