Proceedings of the National Academy of Sciences · 2013 · 157 citations · 28 references
Mammalian genes are often transcribed discontinuously as short bursts of RNA synthesis followed by longer silent periods. However, how these "on" and "off" transitions, together with the burst sizes, are modulated in single cells to increase gene expression upon stimulation is poorly characterized. By combining single-cell time-lapse luminescence imaging with stochastic modeling of the time traces, we quantified the transcriptional responses of the endogenous connective tissue growth factor gene to different physiological stimuli: serum and TGF-β1. Both stimuli caused a rapid and acute increase in burst sizes. Whereas TGF-β1 showed prolonged transcriptional activation mediated by an increase of transcription rate, serum stimulation resulted in a large and temporally tight first transcriptional burst, followed by a refractory period in the range of hours. Our study thus reveals how different physiological stimuli can trigger kinetically distinct transcriptional responses of the same gene.
28
Stochastic mRNA Synthesis in Mammalian Cells
Arjun Raj, Charles S. Peskin, Daniel Tranchina et al. · PLoS Biology · 2006 · 1.8K citations · Full text
Homogeneous Populations, Systems Biology, Functional Genomics +15
Dynamics of the p53-Mdm2 feedback loop in individual cells
Galit Lahav, Nitzan Rosenfeld, Alex Sigal et al. · Nature Genetics · 2004 · 1K citations · Full text
Mammalian Genes Are Transcribed with Widely Different Bursting Kinetics
David M. Suter, Nacho Molina, David Gatfield et al. · Science · 2011 · 1K citations · Full text
Single-cell NF-κB dynamics reveal digital activation and analogue information processing
Savaş Tay, Jacob Hughey, Timothy K. Lee et al. · Nature · 2010 · 809 citations · Full text
The Glucocorticoid Receptor: Rapid Exchange with Regulatory Sites in Living Cells
James G. McNally, Waltraud G. Müller, Dawn A. Walker et al. · Science · 2000 · 795 citations