Converging preganglionic axons refine without synaptic transmission when targets downstream of sympathetic nerves are active
Chong, Y.; Cooper, E.
Show abstract
Synaptic activity plays several roles as developing neurons make connections with their targets. It acts locally at synapses to influence the expression of genes needed to establish and maintain synaptic contacts. And, downstream it provides the necessary activity to strengthen and refine connections. Many studies have demonstrated how synaptic activity alters synaptic strength and increases synapse numbers. Much less is known, however, about the long-term consequences when a circuit develops without synaptic activity. To address this, we developed a mosaic model of sympathetic ganglia where synaptically-active and synaptically-inactive sympathetic neurons develop side-by-side in vivo. This model allowed us to address two issues. One is the relationship between activity and the refinement of converging inputs; the second is how synaptic activity contributes to a neurons gene expression profile. Our results indicate that converging presynaptic inputs to synaptically-silent neurons do not require postsynaptic activity to refine, provided these neurons share targets with synaptically-active neurons. Second, we demonstrate with single-cell RNA sequencing experiments that the expression of many genes by sympathetic neurons is independent of endogenous activity or local signals immediately downstream of excitatory postsynaptic potentials. An exception are genes required for neurotransmitter metabolism: We found that for a large sub-population of sympathetic neurons, synaptic activity increases the expression of adrenergic genes and supresses the expression of cholinergic genes. We conclude that signals generated locally at synapses do not initiate refinement of converging inputs, and that synaptic activitys influence on a neurons gene expression profiles is complex and depends on context.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Modular and distinct PlexinA4/Farp2/Rac1 signaling controls dendrite morphogenesis 96%
- Drebrin Regulates Collateral Axon Branching in Cortical Layer II/III Somatosensory Neurons 96%
- Molecular characterization of nodose ganglia development reveals a novel population of Phox2b+ glial progenitors in mice 96%
Similar papers in this journal
Similar papers in this journal
- Cell-type specificity of neuronal excitability and morphology in the central amygdala 96%
- Genetically Defined Subtypes of Somatostatin-Containing Cortical Interneurons 95%
- Selective Targeting of a Defined Subpopulation of Corticospinal Neurons using a Novel Klhl14-Cre Mouse Line Enables Molecular and Anatomical Investigations through Development into Maturity 95%
Similar papers in this journal
- Transcytosis-mediated anterograde transport of TrkA receptors is necessary for sympathetic neuron development and function 96%
- Pain and itch processing by subpopulations of molecularly diverse spinal and trigeminal projection neurons 95%
- Presynaptic α2δ subunits are key organizers of glutamatergic synapses 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.