Heterosynaptic metaplasticity in the hippocampus in vivo : A BCM-like modifiable threshold for LTP
Open Access
- 21 August 2001
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 98 (19) , 10924-10929
- https://doi.org/10.1073/pnas.181342098
Abstract
The homeostatic maintenance of the “modification threshold” for inducing long-term potentiation (LTP) is a fundamental feature of the Bienenstock, Cooper, and Munro (BCM) model of synaptic plasticity. In the present study, two key features of the modification threshold, its heterosynaptic expression and its regulation by postsynaptic neural activity, were tested experimentally in the dentate gyrus of awake, freely moving rats. Conditioning stimulation ranging from 10 to 1,440 brief 400-Hz trains, when applied to medial perforant path afferents, raised the threshold for LTP induction heterosynaptically in the neighboring lateral perforant path synapses. This effect recovered slowly over a 7- to 35-day period. The same conditioning paradigms, however, did not affect the reversal of long-term depression. The inhibition of LTP by medial-path conditioning stimulation was N-methyl-D-aspartate (NMDA) receptor-dependent, but antidromic stimulation of the granule cells could also inhibit lateral path LTP induction, independently of NMDA receptor activation. Increased calcium buffering is a potential mechanism underlying the altered LTP threshold, but the levels of two important calcium-binding proteins did not increase after conditioning stimulation, nor was de novo protein synthesis required for generating the threshold shift. These data confirm, in an in vivo model, two key postulates of the BCM model regarding the LTP threshold. They also provide further evidence for the broad sensitivity of synaptic plasticity mechanisms to the history of prior activity, i.e., metaplasticity.Keywords
This publication has 28 references indexed in Scilit:
- Experience-dependent modification of synaptic plasticity in visual cortexNature, 1996
- Metaplasticity: the plasticity of synaptic plasticityTrends in Neurosciences, 1996
- Synaptic Plasticity: A molecular mechanism for metaplasticityCurrent Biology, 1995
- Mechanism for a sliding synaptic modification thresholdNeuron, 1995
- CaMKII regulates the frequency-response function of hippocampal synapses for the production of both LTD and LTPCell, 1995
- Involvement of a calcineurin/ inhibitor-1 phosphatase cascade in hippocampal long-term depressionNature, 1994
- Cytoplasmic calcium buffer, calbindin-D28k, is regulated by excitatory amino acidsNeuroReport, 1993
- Up regulation of calbindin-D28K mRNA in the rat hippocampus following focal stimulation of the perforant pathNeuron, 1991
- A Physiological Basis for a Theory of Synapse ModificationScience, 1987
- Physiological identification and analysis of dentate granule cell responses to stimulation of the medial and lateral perforant pathways in the ratJournal of Comparative Neurology, 1977