Heterogeneous CaMKII-dependent synaptic compensations in CA1 pyramidal neurons from acute slices with dissected CA3
Vergara, P.; Pino, G.; Vera, J.; Sanhueza, M.
Show abstract
Prolonged changes in neural activity trigger homeostatic synaptic plasticity (HSP) allowing neuronal networks to operate in functional ranges. Cell-wide or input-specific adaptations can be induced by pharmacological or genetic manipulations of activity, and by sensory deprivation. Reactive functional changes caused by deafferentation may partially share mechanisms with HSP. Acute hippocampal slices constitute a suitable model to investigate relatively rapid (hours) pathway-specific modifications occurring after denervation and explore the underlying mechanisms. As Schaffer collaterals constitute a major glutamatergic input to CA1 pyramidal neurons, we conducted whole-cell recordings of miniature excitatory postsynaptic currents (mEPSCs) to evaluate changes over 12 hours after slice preparation and CA3 dissection. We observed an increment in mEPSCs amplitude and a decrease in decay time, suggesting synaptic AMPA receptor upregulation and subunit content modifications. Sorting mEPSC by rise time, a correlate of synapse location along dendrites, revealed amplitude raises at two separate domains. A specific frequency increase was observed in the same domains and was accompanied by a global, unspecific raise. Amplitude and frequency increments were lower at sites initially more active, consistent with local compensatory processes. Transient preincubation with a specific Ca2+/calmodulin-dependent kinase II (CaMKII) inhibitor either blocked or occluded amplitude and frequency upregulation in different synapse populations. Results are consistent with the concurrent development of different known CaMKII-dependent HSP processes. Our observations support that deafferentation causes rapid and diverse compensations resembling classical slow forms of adaptation to inactivity. These results may contribute to understand fast-developing homeostatic or pathological events after brain injury.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Astrocyte GluN2C NMDA receptors control basal synaptic strengths of hippocampal CA1 pyramidal neurons in the stratum radiatum 97%
- Dopamine increases protein synthesis in hippocampal neurons enabling dopamine-dependent LTP 97%
- Distinct release properties of glutamate/GABA co-transmission serve as a frequency-dependent filtering of supramammillary inputs 97%
Similar papers in this journal
- Extracellular GABA waves regulate coincidence detection in excitatory circuits 96%
- Selective activation of BK channels in small-headed dendritic spines suppresses excitatory postsynaptic potentials 96%
- Heterogeneity of synaptic NMDA receptor responses within individual lamina I pain processing neurons across sex in rats and humans 96%
Similar papers in this journal
- Heterosynaptic cross-talk of pre- and postsynaptic strengths along segments of dendrites 97%
- Astroglial gap junctions strengthen hippocampal network activity by sustaining afterhyperpolarization via KCNQ channels 96%
- Spatial regulation of coordinated excitatory and inhibitory synaptic plasticity at dendritic synapses 96%
Similar papers in this journal
- Retrograde suppression of post-tetanic potentiation at the mossy fiber-CA3 pyramidal cell synapse 96%
- Progressive circuit hyperexcitability in mouse neocortical slice cultures with increasing duration of activity silencing 96%
- The synapsin-dependent vesicle cluster is crucial for presynaptic plasticity at a glutamatergic synapse in male mice 96%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.