Endocannabinoid Signaling Mediates Local Dendritic Coordination between Excitatory and Inhibitory Synapses

Publication date

2019-04-16

Authors

Hu, Hai YinISNI 0000000506011832
Kruijssen, Dennis Leonardus HendrikISNI 000000052401683X
Pereira Frias, C.S.ISNI 0000000506036642
Rózsa, Balázs
Hoogenraad, Casper CISNI 0000000396512854
Wierenga, Corette JORCID 0000-0001-9073-4099ISNI 0000000394783669

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Abstract

Dendritic inhibitory synapses are most efficient in modulating excitatory inputs localized on the same dendrite, but it is unknown whether their location is random or regulated. Here, we show that the formation of inhibitory synapses can be directed by excitatory synaptic activity on the same dendrite. We stimulated dendritic spines close to a GABAergic axon crossing by pairing two-photon glutamate uncaging with postsynaptic depolarization in CA1 pyramidal cells. We found that repeated spine stimulation promoted growth of a GABAergic bouton onto the same dendrite. The dendritic feedback signal required postsynaptic activation of DAGL, which produces the endocannabinoid 2-AG, and was mediated by CB1 receptors. We could also induce inhibitory bouton growth by local, brief applications of 2-AG. Our findings reveal a dendritic signaling mechanism to trigger growth of an inhibitory bouton at dendritic locations with strong excitatory synaptic activity, and this mechanism may serve to ensure inhibitory control over clustered excitatory inputs.

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Hu, H Y, Kruijssen, D L H, Frias, C P, Rózsa, B, Hoogenraad, C C & Wierenga, C J 2019, 'Endocannabinoid Signaling Mediates Local Dendritic Coordination between Excitatory and Inhibitory Synapses', Cell Reports, vol. 27, no. 3, pp. 666-675.e5. https://doi.org/10.1016/j.celrep.2019.03.078