Published September 30, 2024 | Version v1

Stimulating Wnt signaling reveals context-dependent genetic effects on gene regulation in primary human neural progenitors

  • 1. University of North Carolina at Chapel Hill

Description

Summary statistics for chromatin accessibility and gene expression quantitative trait loci (ca/eQTLs) from Matoba, N., Le, B.D., Valone, J.M. et al. Stimulating Wnt signaling reveals context-dependent genetic effects on gene regulation in primary human neural progenitors. Nat Neurosci (2024). https://doi.org/10.1038/s41593-024-01773-6

Files

Files (19.6 GB)

Name Size
md5:6113889b123135ffbba6c3e75a9f381f
1.5 GB Download
md5:a1c358c5e94842b3f064bce6a623bce0
5.0 GB Download
md5:4a86b578f7c1bff38eb2c421d8161006
1.5 GB Download
md5:ab66167d09a754b87612bb86f4434c9e
5.1 GB Download
md5:aed1ed8bce1be561180712e82e0ec302
1.4 GB Download
md5:e7edcf8758e53e7f5c82016d26cc419e
5.1 GB Download

Additional details

Identifiers

Dates

Available
2024-09-30
Accepted
2024-08-28

Software

Repository URL
https://bitbucket.org/steinlabunc/wnt-rqtls/
Programming language
R
Development Status
Active

References

  • Matoba, N., Le, B.D., Valone, J.M. et al. Stimulating Wnt signaling reveals context-dependent genetic effects on gene regulation in primary human neural progenitors. Nat Neurosci (2024). https://doi.org/10.1038/s41593-024-01773-6