计算生物学
狂犬病病毒
生物
免疫原性
神经科学
计算机科学
病毒
生物信息学
病毒学
免疫系统
遗传学
作者
Hassal Lee,Ernesto Ciabatti,Ana González-Rueda,Elena Williams,Fiona Nugent,Souradip Mookerjee,Fabio Morgese,Marco Tripodi
出处
期刊:Nature Methods
[Nature Portfolio]
日期:2023-03-02
卷期号:20 (4): 580-589
被引量:13
标识
DOI:10.1038/s41592-023-01787-1
摘要
An exciting frontier in circuit neuroscience lies at the intersection between neural network mapping and single-cell genomics. Monosynaptic rabies viruses provide a promising platform for the merger of circuit mapping methods with -omics approaches. However, three key limitations have hindered the extraction of physiologically meaningful gene expression profiles from rabies-mapped circuits: inherent viral cytotoxicity, high viral immunogenicity and virus-induced alteration of cellular transcriptional regulation. These factors alter the transcriptional and translational profiles of infected neurons and their neighboring cells. To overcome these limitations we applied a self-inactivating genomic modification to the less immunogenic rabies strain, CVS-N2c, to generate a self-inactivating CVS-N2c rabies virus (SiR-N2c). SiR-N2c not only eliminates undesired cytotoxic effects but also substantially reduces gene expression alterations in infected neurons and dampens the recruitment of innate and acquired immune responses, thus enabling open-ended interventions on neural networks and their genetic characterization using single-cell genomic approaches.
科研通智能强力驱动
Strongly Powered by AbleSci AI