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Neurexin directs partner-specific synaptic connectivity in C. elegans.

Alison Philbrook | Shankar Ramachandran | Christopher M Lambert | Devyn Oliver | Jeremy Florman | Mark J Alkema | Michele Lemons | Michael M Francis
eLife | 2018

In neural circuits, individual neurons often make projections onto multiple postsynaptic partners. Here, we investigate molecular mechanisms by which these divergent connections are generated, using dyadic synapses in C. elegans as a model. We report that C. elegans nrx-1/neurexin directs divergent connectivity through differential actions at synapses with partnering neurons and muscles. We show that cholinergic outputs onto neurons are, unexpectedly, located at previously undefined spine-like protrusions from GABAergic dendrites. Both these spine-like features and cholinergic receptor clustering are strikingly disrupted in the absence of nrx-1. Excitatory transmission onto GABAergic neurons, but not neuromuscular transmission, is also disrupted. Our data indicate that NRX-1 located at presynaptic sites specifically directs postsynaptic development in GABAergic neurons. Our findings provide evidence that individual neurons can direct differential patterns of connectivity with their post-synaptic partners through partner-specific utilization of synaptic organizers, offering a novel view into molecular control of divergent connectivity.

Pubmed ID: 30039797

Research resources used in this publication

None found

Antibodies used in this publication

None found

Associated grants

  • Agency: NIDA NIH HHS, United States
    Id: F31 DA038399
  • Agency: NIGMS NIH HHS, United States
    Id: R01GM084491
  • Agency: NIDA NIH HHS, United States
    Id: F31DA038399
  • Agency: NINDS NIH HHS, United States
    Id: R01 NS064263
  • Agency: NINDS NIH HHS, United States
    Id: R01NS064263
  • Agency: NIGMS NIH HHS, United States
    Id: R01 GM084491

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