AI Article Synopsis

  • N-cadherin plays a crucial role in regulating synaptic transmission in mammalian neurons, particularly at glutamatergic synapses.
  • Although initial synapse formation isn't affected by the absence of N-cadherin, its lack results in significant impairments in presynaptic function, especially during high activity.
  • The study suggests that N-cadherin influences short-term plasticity, shifting synaptic responses from facilitation to depression, and indicates a retrograde mechanism whereby the absence of N-cadherin postsynaptically mimics its complete knockout effects.

Article Abstract

The cell adhesion molecule N-cadherin has been proposed to regulate synapse formation in mammalian central neurons. This is based on its synaptic localization enabling alignment of presynaptic and postsynaptic specializations by an adhesion mechanism. However, a potential role of N-cadherin in regulating synaptic transmission has remained elusive. In this paper, a functional analysis of N-cadherin knock-out synapses was enabled by in vitro neuronal differentiation of mouse embryonic stem cells circumventing the early embryonic lethality of mice genetically null for N-cadherin. In our in vitro system, initial synapse formation was not altered in the absence of N-cadherin, which might be attributable to compensatory mechanisms. Here, we demonstrate that N-cadherin is required for regulating presynaptic function at glutamatergic synapses. An impairment in the availability of vesicles for exocytosis became apparent selectively during high activity. Short-term plasticity was strongly altered with synaptic depression enhanced in the absence of N-cadherin. Most intriguingly, facilitation was converted to depression under specific stimulation conditions. This indicates an important role of N-cadherin in the control of short-term plasticity. To analyze, whether N-cadherin regulates presynaptic function by a transsynaptic mechanism, we studied chimeric cultures consisting of wild-type neocortical neurons and ES cell-derived neurons. With N-cadherin absent only postsynaptically, we observed a similar increase in short-term synaptic depression as found in its complete absence. This indicates a retrograde control of short-term plasticity by N-cadherin. In summary, our results revealed an unexpected involvement of a synaptic adhesion molecule in the regulation of short-term plasticity at glutamatergic synapses.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6673917PMC
http://dx.doi.org/10.1523/JNEUROSCI.1013-06.2006DOI Listing

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