Dissecting mammalian cortical circuit development at single-cell resolution using inducible barcoded rabies virus
Zhang, Z.; D'Arcy, B.; He, L.; Arroyo, D.; Deasy, S.; Matthews, E.; Yan, Z.; Rastogi, N.; Mancia Leon, W.; Kaur, K. S.; Southwell, D. G.; Huang, Z. J.; Silver, D.; Velmeshev, D.
Show abstract
Highly organized circuits of connected neurons enable diverse brain functions. Improper development of these circuits is associated with neurodevelopmental disorders, and understanding how circuits are formed is crucial for unraveling the mechanisms of these diseases. We currently have an incomplete picture of how specific brain circuits develop and how they are affected in disease, because we lack methods to study them at scale and with single-cell resolution. Monosynaptic rabies tracing is the gold standard method to study circuit architecture. However, it suffers from cellular toxicity, low throughput, lack of control over the timing of labeling, and the inability to access the molecular profiles of individual neurons. To address these issues, we developed an inducible barcoded rabies virus (ibRV) to enable temporal-controlled labeling of synaptic circuits followed by high-throughput single-cell genomics readout. ibRV allows for dissecting neuronal circuit changes over time at single-cell and spatial resolution. We applied ibRV to study the development of specific mouse cortical circuits during late prenatal and postnatal life using single-cell genomics and unbiased spatial transcriptomics as readouts. We characterized and quantified developmental connectivity patterns and molecular cascades that underlie their formation. Additionally, we constructed functional in silico circuit models that enable interrogation of circuit function and dysfunction at specific developmental stages. Our study provides novel tools for circuit analysis and can provide new insights into the mechanisms of mammalian brain development.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Influenza A virus undergoes compartmentalized replication in vivo dominated by stochastic bottlenecks 97%
- Spatial and functional arrangement of Ebola virus polymerase inside phase-separated viral factories 96%
- Development Of A Potent Monoclonal Antibody For Treatment Of Human Metapneumovirus Infections 96%
Similar papers in this journal
- Conserved sites on the influenza H1 and H3 hemagglutinin recognized by human antibodies 96%
- Elucidating the Mechanism by Which HIV-1 Nucleocapsid Mutations Confer Resistance to Integrase Strand Transfer Inhibitors 96%
- The SARS-CoV-2 spike (S) and the orthoreovirus p15 cause neuronal and glial fusion 95%
Similar papers in this journal
Similar papers in this journal
- An arginine-rich nuclear localization signal (ArgiNLS) strategy for streamlined image segmentation of single-cells 97%
- CRISPR with Transcriptional Readout reveals influenza transcriptionis modulated by NELF and can precipitate an interferon response 96%
- Mechanistic Insights into Dengue Virus Inhibition by a Clinical Trial Compound NITD-688 95%
"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.