Related Experiment Video
Updated: Apr 10, 2026

DNA-affinity-purified Chip DAP-chip Method to Determine Gene Targets for Bacterial Two component Regulatory Systems
Published on: July 21, 2014
A network of molecular switches controls the activation of the two-component response regulator NtrC
Dan K Vanatta1, Diwakar Shukla2, Morgan Lawrenz1
1Department of Chemistry, Stanford University, Stanford, California 94305, USA.
Abstract:
Recent successes in simulating protein structure and folding dynamics have demonstrated the power of molecular dynamics to predict the long timescale behaviour of proteins. Here, we extend and improve these methods to predict molecular switches that characterize conformational change pathways between the active and inactive state of nitrogen regulatory protein C (NtrC). By employing unbiased Markov state model-based molecular dynamics simulations, we construct a dynamic picture of the activation pathways of this key bacterial signalling protein that is consistent with experimental observations and predicts new mutants that could be used for validation of the mechanism. Moreover, these results suggest a novel mechanistic paradigm for conformational switching.
Related Concept Videos
RNA Polymerase II Accessory Proteins
Repressible Operon: trp Operon
RL Circuit with Source
The transient response of the circuit is its temporary reaction to the sudden application of the DC source. This response is characterized by a current that exponentially decays to zero as time approaches infinity. During this transitional period, the inductor behaves like a short circuit, causing the source...
Global Regulatory Systems
Co-activators and Co-repressors
Applications of RC Circuits

