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Synaptic reliability correlates with reduced susceptibility to synaptic potentiation by brain-derived neurotrophic
B Berninger1, A F Schinder, M M Poo
1Department of Biology, University of California San Diego, La Jolla 92093-0357, USA.
Learning & Memory (Cold Spring Harbor, N.Y.)
|September 24, 1999
Summary
Brain-derived neurotrophic factor (BDNF) potentiates hippocampal synapses, but its effect depends on initial synaptic strength. Weak synapses show strong potentiation, while strong synapses are less affected, suggesting synapse maturation influences BDNF responsiveness.
Area of Science:
- Neuroscience
- Synaptic Plasticity
- Molecular Biology
Background:
- Brain-derived neurotrophic factor (BDNF) is crucial for synaptic plasticity in the hippocampus.
- BDNF enhances synaptic transmission by increasing neurotransmitter release.
- The impact of BDNF on synaptic potentiation may vary based on initial synaptic properties.
Purpose of the Study:
- To investigate how the initial state of glutamatergic synapses influences their modification by BDNF.
- To determine the relationship between synaptic strength, release probability, and BDNF-induced potentiation.
- To explore potential mechanisms underlying the differential effects of BDNF on hippocampal synapses.
Main Methods:
- Simultaneous perforated patch-clamp recordings from pairs and triplets of hippocampal neurons.
- Analysis of excitatory postsynaptic current (EPSC) amplitude, coefficient of variation (CV), and paired-pulse facilitation.
- Manipulation of release probability (Pr) using altered extracellular calcium and adenosine application.
Main Results:
- Synaptic potentiation by BDNF was greater at weaker synapses and reduced at stronger ones.
- BDNF-induced potentiation correlated with higher CV and lower paired-pulse facilitation, indicating higher susceptibility at low release probability (Pr) synapses.
- Reducing Pr in strong synapses did not restore BDNF potentiation, suggesting factors beyond Pr saturation are involved.
Conclusions:
- The efficacy of BDNF in potentiating hippocampal synapses is dependent on the synapse's initial strength and release probability.
- Synaptic maturation may confer intrinsic properties that limit BDNF responsiveness, independent of release probability saturation.
- Individual neurons can exhibit synaptic terminals with varying sensitivity to BDNF.