Modular organization of enhancer network provides transcriptional robustness in mammalian development

(database[TitleAbstract]) AND (Nucleic acids research[Journal]) 2025-03-08

Summary:

Enhancer clusters, pivotal in mammalian development and diseases, can organize as enhancer networks to control cell identity and disease genes; however, the underlying mechanism remains largely unexplored. Here, we introduce eNet 2.0, a comprehensive tool for enhancer networks analysis during development and diseases based on single-cell chromatin accessibility data. eNet 2.0 extends our previous work eNet 1.0 by adding network topology, comparison and dynamics analyses to its network...

Link:

https://pubmed.ncbi.nlm.nih.gov/39817516/?utm_source=Other&utm_medium=rss&utm_campaign=pubmed-2&utm_content=1VsHRGSo3HX0CgC40wRgBdaScQKv8CRE2sO_GaWJzhPEXTSQfX&fc=20220129230418&ff=20250308002335&v=2.18.0.post9+e462414

From feeds:

📚BioDBS Bibliography » (database[TitleAbstract]) AND (Nucleic acids research[Journal])

Tags:

Authors:

Hongli Lin, Xinyun Ye, Wenyan Chen, Danni Hong, Lifang Liu, Feng Chen, Ning Sun, Keying Ye, Jizhou Hong, Yalin Zhang, Falong Lu, Lei Li, Jialiang Huang

Date tagged:

03/08/2025, 00:23

Date published:

01/16/2025, 06:00