Spiky oscillations in NF-kB signalling
arXiv:q-bio/0509017 · doi:10.1073/pnas.0604085103
Abstract
The NF-kB signalling system is involved in a variety of cellular processes including immune response, inflammation, and apoptosis. Recent experiments have found oscillations in the nuclear-cytoplasmic translocation of the NF-kB transcription factor. How the cell uses the oscillations to differentiate input conditions and send specific signals to downstream genes is an open problem. We shed light on this issue by examining the small core network driving the oscillations, which, we show, is designed to produce periodic spikes in nuclear NF-kB concentration. The oscillations can be used to regulate downstream genes in a variety of ways. In particular, we show that genes to whose operator sites NF-kB binds and dissociates fast can respond very sensitively to changes in the input signal, with effective Hill coefficients in excess of 20.
11 pages, 13 figures
Cited by in corpus (17)
- The free energy cost of accurate biochemical oscillations
- Oscillation patterns in negative feedback loops
- Oscillations and temporal signalling in cells
- The Repressor-Lattice: Feed-Back, Commensurability, and Dynamical Frustration
- On the dephasing of genetic oscillations
- A Model of Late Long-Term Potentiation Simulates Aspects of Memory Maintenance
- Sensitivity analysis of a computational model of the IKK-NF-κB-IκBα-A20 signal transduction network
- Role of DNA binding sites and slow unbinding kinetics in titration-based oscillators
- A method of `speed coefficients' for biochemical model reduction applied to the NF-kappaB system
- Entrainment of noise-induced and limit cycle oscillators under weak noise
- Long delay times in reaction rates increase intrinsic fluctuations
- The heterodimer auto-repression loop: a robust and flexible pulse-generating genetic module
- Cost and Capacity of Signaling in the Escherichia coli Protein Reaction Network
- Naturally Supervised Learning in Manipulable Technologies
- Global and Local: Synchronization and Emergence
- Dosage-dependent NF-kB oscillatory and heterogeneous dynamics in response to E. Coli Lipopolyssachride stimulation
- Performance augmentation in hybrid bionic systems: techniques and experiment