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Monosynaptic tracing maps brain-wide afferent oligodendrocyte precursor cell connectivity.


ABSTRACT: Neurons form bona fide synapses with oligodendrocyte precursor cells (OPCs), but the circuit context of these neuron to OPC synapses remains incompletely understood. Using monosynaptically-restricted rabies virus tracing of OPC afferents, we identified extensive afferent synaptic inputs to OPCs residing in secondary motor cortex, corpus callosum, and primary somatosensory cortex of adult mice. These inputs primarily arise from functionally-interconnecting cortical areas and thalamic nuclei, illustrating that OPCs have strikingly comprehensive synaptic access to brain-wide projection networks. Quantification of these inputs revealed excitatory and inhibitory components that are consistent in number across brain regions and stable in barrel cortex despite whisker trimming-induced sensory deprivation.

SUBMITTER: Mount CW 

PROVIDER: S-EPMC6800000 | biostudies-literature | 2019 Oct

REPOSITORIES: biostudies-literature

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Monosynaptic tracing maps brain-wide afferent oligodendrocyte precursor cell connectivity.

Mount Christopher W CW   Yalçın Belgin B   Cunliffe-Koehler Kennedy K   Sundaresh Shree S   Monje Michelle M  

eLife 20191018


Neurons form bona fide synapses with oligodendrocyte precursor cells (OPCs), but the circuit context of these neuron to OPC synapses remains incompletely understood. Using monosynaptically-restricted rabies virus tracing of OPC afferents, we identified extensive afferent synaptic inputs to OPCs residing in secondary motor cortex, corpus callosum, and primary somatosensory cortex of adult mice. These inputs primarily arise from functionally-interconnecting cortical areas and thalamic nuclei, illu  ...[more]

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