Related Experiment Video
Updated: Apr 12, 2026

The Use of Chemostats in Microbial Systems Biology
Published on: October 14, 2013
Control of relative timing and stoichiometry by a master regulator
Yifat Goldschmidt1, Evgeny Yurkovsky1, Amit Reif1
1Department of Biochemistry and Molecular Biology, Tel Aviv University, Tel Aviv, Israel.
Abstract:
Developmental processes in cells require a series of complex steps. Often only a single master regulator activates genes in these different steps. This poses several challenges: some targets need to be ordered temporally, while co-functional targets may need to be synchronized in both time and expression level. Here we study in single cells the dynamic activation patterns of early meiosis genes in budding yeast, targets of the meiosis master regulator Ime1. We quantify the individual roles of the promoter and protein levels in expression pattern control, as well as the roles of individual promoter elements. We find a consistent expression pattern difference between a non-cofunctional pair of genes, and a highly synchronized activation of a co-functional pair. We show that dynamic control leading to these patterns is distributed between promoter, gene and external regions. Through specific reciprocal changes to the promoters of pairs of genes, we show that different genes can use different promoter elements to reach near identical activation patterns.
Related Concept Videos
Regulation of Metabolism
Master Transcription Regulators
Master Transcription Regulators
Bioreactor Controls-I
Control Systems
At the heart...
Global Regulatory Systems

