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  • Gene regulation by riboswitches with and without negative feedback loop.

Gene regulation by riboswitches with and without negative feedback loop.

Biophysical journal (2013-01-04)
Jong-Chin Lin, D Thirumalai
ABSTRACT

Riboswitches, structured elements in the untranslated regions of messenger RNAs, regulate gene expression by binding specific metabolites. We introduce a kinetic network model that describes the functions of riboswitches at the systems level. Using experimental data for flavin mononucleotide riboswitch as a guide, we show that efficient function, implying a large dynamic range without compromising the requirement to suppress transcription, is determined by a balance between the transcription speed, the folding and unfolding rates of the aptamer, and the binding rates of the metabolite. We also investigated the effect of negative feedback accounting for binding to metabolites, which are themselves the products of genes that are being regulated. For a range of transcription rates negative feedback suppresses gene expression by nearly 10-fold. Negative feedback speeds the gene expression response time, and suppresses the change of steady-state protein concentration by half relative to that without feedback, when there is a modest spike in DNA concentration. A dynamic phase diagram expressed in terms of transcription speed, folding rates, and metabolite binding rates predicts different scenarios in riboswitch-mediated transcription regulation.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
Riboflavin 5′-monophosphate sodium salt hydrate, synthetic, ≥70% (HPLC)
Sigma-Aldrich
Riboflavin 5′-monophosphate sodium salt hydrate, suitable for electrophoresis, suitable for acrylamide photopolymerization, ≥70%, powder
Sigma-Aldrich
Riboflavin 5′-monophosphate sodium salt hydrate, 73-79% (fluorimetric)
Sigma-Aldrich
Riboflavin Sodium Phosphate Hydrate, tested according to Ph. Eur.
Riboflavin sodium phosphate, European Pharmacopoeia (EP) Reference Standard