Open access · CC-BY
via OpenAlex
Nuclear RNA-seq of single neurons reveals molecular signatures of activation
Benjamin Lacar, Sara B. Linker, Baptiste N. Jaeger, Suguna Rani Krishnaswami, Jerika J. Barron, Martijn J. E. Kelder, Sarah Parylak, Apuã C.M. Paquola, Pratap Venepally, Mark Novotny, Carolyn O’Connor, Conor Fitzpatrick, Jennifer A. Erwin, Jonathan Y. Hsu, David Husband
Nature Communications · 2016 · ▲ 453 citations
Abstract
Single-cell sequencing methods have emerged as powerful tools for identification of heterogeneous cell types within defined brain regions. Application of single-cell techniques to study the transcriptome of activated neurons can offer insight into molecular dynamics associated with differential neuronal responses to a given experience. Through evaluation of common whole-cell and single-nuclei RNA-sequencing (snRNA-seq) methods, here we show that snRNA-seq faithfully recapitulates transcriptional patterns associated with experience-driven induction of activity, including immediate early genes (IEGs) such as Fos, Arc and Egr1. SnRNA-seq of mouse dentate granule cells reveals large-scale changes in the activated neuronal transcriptome after brief novel environment exposure, including induction of MAPK pathway genes. In addition, we observe a continuum of activation states, revealing a pseudotemporal pattern of activation from gene expression alone. In summary, snRNA-seq of activated neurons enables the examination of gene expression beyond IEGs, allowing for novel insights into neuronal activation patterns in vivo.
◌ CITATION ONLY
Full text is not openly licensed for redistribution here. Read it at the source:
Provenance
- Source
- OpenAlex
- DOI
- 10.1038/ncomms11022
- Canonical
- link ↗
- Fetched
- 2026-07-25 MST
Cite this
APA
Lacar, B., Linker, S.B., Jaeger, B.N., Krishnaswami, S.R., Barron, J.J., Kelder, M.J.E., Parylak, S., Paquola, A.C., Venepally, P., Novotny, M., O’Connor, C., Fitzpatrick, C., Erwin, J.A., Hsu, J.Y., Husband, D., McConnell, M.J., Lasken, R.S., & Gage, F.H. (2016). Nuclear RNA-seq of single neurons reveals molecular signatures of activation. <em>Nature Communications</em>. https://doi.org/10.1038/ncomms11022
Vancouver
Lacar B, Linker SB, Jaeger BN, Krishnaswami SR, Barron JJ, Kelder MJE, et al. Nuclear RNA-seq of single neurons reveals molecular signatures of activation. Nature Communications. 2016. doi:10.1038/ncomms11022.
BibTeX
@article{benjamin2016Nuclea,
title = {Nuclear RNA-seq of single neurons reveals molecular signatures of activation},
author = {Benjamin Lacar and Sara B. Linker and Baptiste N. Jaeger and Suguna Rani Krishnaswami and Jerika J. Barron and Martijn J. E. Kelder and Sarah Parylak and Apuã C.M. Paquola and Pratap Venepally and Mark Novotny and Carolyn O’Connor and Conor Fitzpatrick and Jennifer A. Erwin and Jonathan Y. Hsu and David Husband and Michael J. McConnell and Roger S. Lasken and Fred H. Gage},
journal = {Nature Communications},
year = {2016},
doi = {10.1038/ncomms11022},
}
Research neighborhood
References, citing works, and semantically nearest findings. Click a node to open it.
Related findings
Cell 2022
Open access · CC-BY
Molecular and spatial signatures of mouse brain aging at single-cell resolution
Aging Cell 2023
Open access · CC-BY
Transcriptional activation of Jun and Fos members of the AP‐1 complex is a conserved signature of immune aging that contributes to inflammaging
PLoS Genetics 2019
Open access · CC-BY
A meta-analysis of genome-wide association studies of epigenetic age acceleration
The Journals of Gerontology Series A 2011
Open access · OA
Age-Associated Vascular Oxidative Stress, Nrf2 Dysfunction, and NF- B Activation in the Nonhuman Primate Macaca mulatta
Frontiers in Neuroscience 2015
Open access · CC-BY
Monocyte trafficking to the brain with stress and inflammation: a novel axis of immune-to-brain communication that influences mood and behavior
Genome biology 2017
Open access · CC-BY