4.7 Article

Hebbian Spike-Timing Dependent Plasticity at the Cerebellar Input Stage

Journal

JOURNAL OF NEUROSCIENCE
Volume 37, Issue 11, Pages 2809-2823

Publisher

SOC NEUROSCIENCE
DOI: 10.1523/JNEUROSCI.2079-16.2016

Keywords

cerebellum; granular layer; spike-timing-dependent plasticity

Categories

Funding

  1. European Union [HBP-29 604102]
  2. Fermi Grant [13(14)]
  3. T.S

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Spike-timing-dependent plasticity (STDP) is a form of long-term synaptic plasticity exploiting the time relationship between postsynaptic action potentials (APs) and EPSPs. Surprisingly enough, very little was known about STDP in the cerebellum, although it is thought to play a critical role for learning appropriate timing of actions. Wespeculated that low-frequency oscillations observed in the granular layer may provide a reference for repetitive EPSP/AP phase coupling. Here we show that EPSP- spike pairing at 6 Hz can optimally induce STDP at the mossy fiber-granule cell synapse in rats. Spike timing-dependent long-term potentiation and depression (st-LTP and st-LTD) were confined to a +/- 25 ms time-window. Because EPSPs led APs in st- LTP while APs led EPSPs in st-LTD, STDP was Hebbian in nature. STDP occurred at 6-10 Hz but vanished > 50 Hz or < 1 Hz (where only LTP or LTD occurred). STDP disappeared with randomized EPSP/AP pairing or high intracellular Ca2+ buffering, and its sign was inverted by GABA-A receptor activation. Both st-LTP and st-LTD required NMDAreceptors, but st-LTP also required reinforcing signals mediated by mGluRs and intracellular calcium stores. Importantly, st-LTP and st-LTD were significantly larger than LTP and LTD obtained by modulating the frequency and duration of mossy fiber bursts, probably becauseSTDPexpression involved postsynaptic in addition to presynaptic mechanisms. These results thus show that a Hebbian form of STDP occurs at the cerebellum input stage, providing the substrate for phase-dependent binding of mossy fiber spikes to repetitive theta-frequency cycles of granule cell activity.

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