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Updated: Aug 5, 2026

Real-time Analysis of Transcription Factor Binding, Transcription, Translation, and Turnover to Display Global Events During Cellular Activation
Published on: March 7, 2018
Deciphering global transcriptional dynamics coordinated by gene-gene regulatory interactions using single-cell data
Liying Zhou1,2, Songhao Luo3, Zhiwei Huang1,2
1School of Mathematics, Sun Yat-sen University, Guangzhou, 510275, China.
Researchers developed BurstLink, a new framework to understand how gene networks control gene expression bursts. This reveals genome-wide principles governing transcriptional dynamics and cell variability.
Area of Science:
- Molecular Biology
- Systems Biology
- Genomics
Background:
- Transcription is a dynamic, stochastic process occurring in bursts, influenced by gene regulatory interactions.
- Cell-to-cell heterogeneity arises from these bursting dynamics, but genome-wide understanding is limited.
- Mechanistic insights into how regulatory networks shape transcriptional bursting are lacking.
Purpose of the Study:
- To develop a genome-wide, mechanistic framework for inferring regulatory interactions and transcriptional bursting kinetics.
- To provide a unified model for analyzing transcriptional bursting dynamics from single-cell data.
- To uncover genome-wide regulatory principles governing gene expression bursts.
Main Methods:
- Introduced BurstLink, a statistical-mechanistic framework integrating gene regulatory networks and transcriptional bursting.
- Utilized reweighted mutual information to quantify regulatory strength and infer directionality and interaction types.
- Applied the framework to single-cell data from mouse embryonic fibroblasts.
Main Results:
- Identified genome-wide regulatory mechanisms influencing transcriptional bursting dynamics.
- Found downstream target genes have higher burst frequency and variability than upstream transcription factors.
- Demonstrated that transcription factor binding affinity correlates with target gene burst frequency and size.
- Showed positive regulation increases target gene burst frequency and variability, unlike negative regulation.
Conclusions:
- BurstLink deciphers general principles of global transcriptional dynamics.
- The study provides novel biological insights into cell fate decisions driven by transcriptional bursting.
- Revealed distinct roles of positive and negative regulation in modulating transcriptional bursting.
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