Katalog Plus
Bibliothek der Frankfurt UAS
Bald neuer Katalog: sichern Sie sich schon vorab Ihre persönlichen Merklisten im Nutzerkonto: Anleitung.
Dieses Ergebnis aus BASE kann Gästen nicht angezeigt werden.  Login für vollen Zugriff.

A model of transcriptional bursting dynamics based on coupling between chromatin and enhancer states

Title: A model of transcriptional bursting dynamics based on coupling between chromatin and enhancer states
Authors: Axelrod, Ofri; Binshtok, Udi; Gebelein, Brian; Garcia, Hernan G; Sprinzak, David
Publisher Information: eScholarship, University of California
Publication Year: 2025
Collection: University of California: eScholarship
Subject Terms: 3101 Biochemistry and Cell Biology (for-2020); 31 Biological Sciences (for-2020); Genetics (rcdc); 1.1 Normal biological development and functioning (hrcs-rac); Generic health relevance (hrcs-hc)
Description: In recent years, it has become evident that transcription is not always a continuous process. Rather, many genes exhibit bursting behavior characterized by discrete periods of transcriptional activity and inactivity. While transcriptional bursting has been broadly observed across different organisms, from bacteria to mammals, we lack a mechanistic understanding of the molecular events that regulate this widespread process. Specifically, how the expression of a 'bursty' gene is quantitatively determined by different molecular factors such as the concentration of transcription factors (TF) and architecture of the enhancers is not well understood. Here, we introduce a model based on the interplay between chromatin state and TF binding in order to describe bursting dynamics. We leverage the widespread Monod-Wyman-Changeux two-state model to predict the dependence of transcriptional bursting dynamics on TF concentration, binding affinity, and number of TF binding sites. We use the model to qualitatively reproduce the behavior of bursting dynamics observed in the C. elegans gonad. Overall, we provide a tractable model for transcriptional bursting that offers mechanistic insights into the factors regulating transcriptional bursting and generates experimentally testable predictions capable of uncovering the molecular basis of this widespread process.
Document Type: article in journal/newspaper
File Description: application/pdf
Language: unknown
Relation: qt4d0852jf; https://escholarship.org/uc/item/4d0852jf; https://escholarship.org/content/qt4d0852jf/qt4d0852jf.pdf
DOI: 10.1101/2025.11.29.691276
Availability: https://escholarship.org/uc/item/4d0852jf; https://escholarship.org/content/qt4d0852jf/qt4d0852jf.pdf; https://doi.org/10.1101/2025.11.29.691276
Rights: CC-BY
Accession Number: edsbas.127AD955
Database: BASE